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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
31

How the manipulation of the Ras homolog enriched in striatum alters the behavioral and molecular progression of Huntington’s disease

Lee, Franklin A 18 December 2015 (has links)
Huntington’s disease is an incurable, progressive neurological disorder characterized by loss of motor control, psychiatric dysfunction, and eventual dystonia leading to death. Despite the fact that this disorder is caused by a mutation in one single gene, there is no cure. The mutant Huntingtin (mHtt) protein is expressed ubiquitously throughout the brain but frank cell death is limited to the striatum. Recent work has suggested that Rhes, Ras homolog enriched in striatum, which is selectively expressed in the striatum, may play a role in Huntington’s disease neuropathology. In vitro studies have shown Rhes to be an E3 ligase for the post-translational modification protein SUMO. Rhes increases binding of SUMO to mHtt which competes for the same binding site as Ubiquitin. SUMOylation of mHtt leads to disaggregation and cellular death, whereas ubiquitination leads to aggregation and cellular protection. In a previous study we showed that deletion of Rhes caused a decrease in the Huntington’s disease phenotype in mice. We hypothesized that mice lacking Rhes would also show increased aggregation in the striatum and this increased aggregation would correlate in a rescue of behavioral symptoms. Despite the prior in vitro and in vivo evidence, deletion of Rhes in vivo did not alter the aggregation of mHtt in the striatum of mice however deletion of Rhes still showed a rescue from the diseased phenotype. This result would indicate that deletion of Rhes alters the neurobehavioral phenotype of Huntington’s disease through a different pathway than promoting aggregation in striatal cells.
32

Binding and internalization of exogenous protein assemblies by mammalian cells / Liaison et internalisation d’assemblages protéiques exogènes par des cellules de mammifère

Ruiz Arlandis, Gemma 13 March 2015 (has links)
Le mépliement et l'agrégation des protéines sont à l'origine de nombreuses maladies neurodégénératives, dont la maladie de Huntington (HD) et la maladie de Parkinson (PD). Même si l’agrégation de différentes protéines liées à des maladies est bien documentée, on en sait peu sur l'interaction entre les protéines mal repliées et les cellules neuronales, qui leur permettent de se propager et affecter différentes régions du cerveau. L'objectif de ma thèse était de générer des modèles cellulaires rapporteurs de la huntingtine et l’α-synucléine, protéines dont le mauvais repliement et l'agrégation sont à l'origine de HD et PD respectivement, et utiliser ces modèles cellulaires pour étudier les interactions entre les agrégats et des lignées cellulaires de mammifères. Notre but c’était de documenter les propriétés de liaison et d’absorption de ces agrégats par les cellules rapporteuses, et les conséquences de leur internalisation pour les cellules. Deux modèles cellulaires de neuroblastome (SH-SY5Y et Neuro2A) et un modèle de cellules d’ostéoblastome (U2OS) exprimant la protéine fluorescente ChFP ont été générés pour HD. Pour simuler ce qui se passe au sein de neurones réels, des cellules de neuroblastome ont été induites à se différencier. Des différences de fixation, internalisation, nucléation de la protéine endogène et localisation finale des agrégats de polyglutamine internalisés ont été observées entre les cellules différenciées et non différenciées. Des cellules rapporteuses U2OS ont été utilisées pour déterminer les différences d’infectiosité entre des fibres de HttExon1 assemblés en présence ou en l’absence de la protéine de choc thermique constitutivement exprimée chez l'Homme Hsc70. Hsc70 a un effet protecteur car il rend les fibres moins infectieuses pour les cellules de mammifères en culture. Enfin, un modèle cellulaire de neuroblastome (Neuro2A) rapporteur pour PD exprimant l’α-synucléine fusionnée à la protéine ChFP a été utilisé pour déterminer des différences de liaison, pénétration, absorption, nucléation de la protéine endogène et persistance entre deux polymorphismes d’α-synucléine générés par notre équipe. L'hétérogénéité observée dans différents patients souffrant de synucléinopaties pourrait s'expliquer par différents polymorphes d’assemblages protéiques d’α-synucléine présents dans les cerveaux des malades, ce qui doit être pris en compte pour les développements thérapeutiques futurs.Ces modèles cellulaires rapporteurs pour différentes maladies sont un système valable pour l'étude de différents processus cellulaires liés à l'interaction entre les protéines agrégées exogènes et des cellules de mammifères en culture. Nos résultats indiquent un mécanisme commun par lequel les différentes protéines agrégées peuvent interagir avec des cellules en culture: les protéines mal repliées exogènes sont capables de se lier à des membranes cellulaires, les pénétrer, entrer dans l'espace intracellulaire et recruter des protéines endogènes solubles. Même si cela semble être un mécanisme générique pour des protéines infectieuses telles que la α-synucléine ou la huntingtine, des lignées cellulaires avec différents phénotypes montrent différences de vulnérabilité à la présence de protéines agrégées. Ceci suggère la présence de récepteurs spécifiques à la surface de la cellule capables de reconnaître des structures de type amyloïde. D'autres études sont nécessaires pour déterminer la nature de ces récepteurs et si sa modulation pourrait être utile pour contrôler la propagation des ces maladies dans le cerveau. / Protein misfolding and aggregation are at the origin of many neurodegenerative diseases, including Huntington’s disease (HD) and Parkinson’s disease (PD). Even if the aggregation of different disease-related proteins is well documented, little is known about the interaction between those misfolded proteins and neuronal cells that allow them to spread and affect several regions of the brain. The objective of my thesis was to generate reporter cellular models of huntingtin and α-synuclein, proteins whose misfolding and aggregation are at the origin of HD and PD respectively, and use these cell models for studying the interactions between misfolded protein aggregates and mammalian cell lines. We aimed to document the binding and uptake properties of those aggregates by reporter cells and the consequences of their internalization for the cells. Two neuroblastoma cell models (SH-SY5Y and Neuro2A) and an osteoblastoma cell model (U2OS) expressing the fluorescent protein ChFP were generated as mammalian reporter cell lines for HD. To mimic what happens in real neurons, neuroblastoma reporter cells were induced to differentiate. Differences in binding, internalization, nucleation of the endogenous protein and final localization of the internalized polyglutamine aggregates were observed between differentiated and undifferentiated cells. U2OS reporter cells were used for determining differences in the infectivity of HttExon1 fibrils assembled in the presence or in the absence of the constitutively expressed heat shock protein Hsc70, suggesting a protective effect of Hsc70, since it renders the fibrils less infectious to mammalian cells. Finally, a neuroblastoma reporter cell model (Neuro2A) of PD expressing α-synuclein fused to the fluorescent and reporter protein ChFP was used to determine the different binding, penetration, uptake, nucleation of the endogenous protein and persistence properties of two α-synuclein polymorphs generated by our team. The heterogeneity observed in different patients suffering from synucleinopathies could be explained due to different α-synuclein assemblies present in diseased brains, what needs to be taken into account for future therapeutic developments. These reporter cellular models for different diseases are a valid system for the study of different cellular processes related with the interaction between exogenous aggregated proteins and mammalian cells in culture. Our results indicate a common mechanism by which different aggregated proteins can interact with cells in culture: exogenous misfolded proteins are able to bind cell membranes, penetrate them, enter the intracellular space and recruit endogenous soluble proteins. Even if this seems to be a generic mechanism for infectious proteins such as α-synuclein or huntingtin, different cell lines or cell phenotypes show distinct vulnerability to the presence of aggregated proteins. This strongly suggests the presence of specific receptors at the surface of the cell able to recognize amyloid-like structures. Further investigations are needed to determine the nature of these receptors and whether their modulation might be helpful for controlling the spread of these diseases within the brain.
33

Methodological development in peptide chemistry for synthesis of antimicrobial and antifungal derivatives of marine natural peptides / Développement méthodologique en synthèse peptidique pour l'obtention de composés antifongiques et antibactériens dérivés de peptides marins.

Das, Sanjit 16 November 2018 (has links)
La chimie de clic est devenue indispensable dans les nombreux domaines de chimie associée à la conception de médicament. Dans ce contexte, comme nous savons(connaissons) l'étude concernant l'impact d'insertion triazole sur la conformation de peptaibol est limitée, nous avons conduit l'étude pour examiner l'impact et l'adaptabilité de 1, 1 4-disubstituted, 2, l'insertion 3-triazole dans peptaibols différent. Selon le résultat de cette expérience touchant à l'activité réduite et la conformation perturbée de l'analogue peptaibol, le substitut dipeptide décoré du fragment triazole portant substituents hydrophobe divers a été inséré à très N-ter la partie du peptaibol. L'amélioration du bioactivity et de la restauration de la conformation pour les analogues peptaibol a été observée et le fait a été aussi soutenu par les résultats obtenus de l'étude biophysique des analogues choisis d'ALM F50/5. Nous avons plus loin prolongé notre étude pour employer notre stratégie à être appliqué sur le peptide P42 thérapeutique qui souffre de la limitation de manque de perméabilité et de stabilité. Le peptide P42 est impliqué dans le pathophysiology de la maladie d'Huntington neurodégénératif. Un total de 12 analogues de peptide de P42-camelote a été synthétisé par SPPS par notre protocole optimize. Dans la deuxième partie, nous avons développé une stratégie pour synthétiser lipopeptide cyclique produit de l'espèce cynaobacterial marine. Notre objectif principal était de synthétiser Hormothamnin A, undecapeptide cyclique consistant de plusieurs acides aminés artificiels incluant dehydroamino acide (Dhaa) qui fait la synthèse de ce peptide compliqué. En raison de cette raison, premièrement, nous avons voulu appliquer notre stratégie de synthétiser Trichormamide A, une sorte relativement plus simple de cylic lipopeptide. Après l'accomplissement de cette tâche, une première tentative a été faite pour synthétiser Hormothamnin A. Le résultat préliminaire de ceci est présenté dans cette section. Enfin, nous avons essayé de développer une méthodologie robuste pour synthétiser Fmoc-Dhaa dans la phase de solution et son insertion dans l'ordre peptaibol par une norme(un standard) SPPS le protocole. Les résultats préliminaires que nous avons concernant la synthèse Dhaa et son insertion dans peptaibol sont aussi discutés ici de plus avec la synthèse de phase solide de Bergofungin naturel D. / The click chemistry has become indispensible in the many areas of chemistry associated with drug design. In this context, as we know the study concerning the impact of triazole insertion on the conformation of peptaibol is limited, we have conducted the study to investigate the impact and adaptability of the 1, 4-disubstituted 1, 2, 3-triazole insertion into different peptaibols. Depending on the outcome of this experiment relating to reduced activity and perturbed conformation of the peptaibol analogue, the dipeptide surrogate decorated with the triazole moiety bearing various hydrophobic substituents was inserted at the very N-ter part of the peptaibol. The improvement of the bioactivity and restoration of the conformation for the peptaibol analogues was observed and the fact was also supported by the results obtained from the biophysical study of the selected analogues of ALM F50/5. We have further extended our study to employ our strategy to be applied on the therapeutic P42 peptide which suffers from the limitation of lack of permeability and stability. P42 peptide is involved in the pathophysiology of neurodegenerative Huntington’s disease. A total of 12 analogues of P42-TAT peptide were synthesized through SPPS by our optimized protocol. In the second part, we have developed a strategy for synthesizing the cyclic lipopeptide originated from marine cynaobacterial species. Our main objective was to synthesize Hormothamnin A, a cyclic undecapeptide consisting of several unnatural amino acids including dehydroamino acid (Dhaa) which makes the synthesis of this peptide complicated. Due to this reason, firstly, we have chosen to apply our strategy to synthesize Trichormamide A, a relatively simpler kind of cylic lipopeptide. After accomplishing this task, a first attempt was made to synthesize Hormothamnin A. The preliminary result of this is presented in this section. At last, we have tried to develop a robust methodology to synthesize Fmoc-Dhaa in solution phase and its insertion into the peptaibol sequence through a standard SPPS protocol. The preliminary results we have got concerning the Dhaa synthesis and its insertion into peptaibol are also discussed here in addition with the solid phase synthesis of natural Bergofungin D
34

Caractérisation de la transmission GABAergique dans le globus pallidus externe chez des modèles rongeurs des maladies de Parkinson et de Huntington / Investigation of GABAergic neurotransmission in the external globus pallidus in rodent models of Parkinson and huntington’s diseases

Chazalon, Marine 18 December 2015 (has links)
Les ganglions de la base (GB) sont un ensemble de noyaux sous-corticaux impliqués dans les fonctions motrices, mnésiques et cognitives. Le globus pallidus externe (GPe) est un noyau GABAergique, qui tient la place de structure relais entre le striatum et le noyau sous-thalamique au sein du réseau des GB. Les changements de mode et de fréquence de décharge des neurones du GPe sont connus pour être les signatures électro-physiologiques des maladies de Parkinson (MP) et de Huntington (MH). Dans la MP, où les concentrations de GABA extracellulaires sont anormalement élevées dans le GPe, il est admis que la voie striato-pallidale (STR-GPe) est hyperactive, ce qui contribue à l’hypoactivité des neurones pallidaux. A l’inverse dans la MH, il est admis que l’hyperactivité des neurones du GPe est due à la dégénérescence de la voie STR-GPe levant la principale influence inhibitrice du GPe. Cependant, les mécanismes moléculaires impliqués dans ces changements d’activité pallidale sont encore peu connus. Nous avons donc entrepris des expériences de biologie moléculaire, d’immunohistochimie et d’électrophysiologie sur tranches, afin de mieux caractériser l’origine des modifications de transmission GABAergique conduisant aux changements d’activité électro-physiologique des neurones du GPe dans ces deux pathologies à l’aide de modèles animaux. Mes principaux résultats montrent l’apparition d’une inhibition tonique dans les neurones du GPe due à un déficit de recapture du GABA dans la MP et une réduction précoce de la transmission synaptique GABAergique dans la MH. Ces résultats suggèrent que les altérations de la transmission GABAergique contribuent à la physiopathologie de la MP et la MH. / The basal ganglia (BG) are a group of sub-cortical nuclei involved in motor, memory and cognitive functions. In the BG, the GABAergic external globus pallidus (GPe) holds a position of relay nucleus between the striatum (STR) and the sub thalamic nucleus within the indirect pathway of the BG. Modifications of rate and pattern of activity of this nucleus are known to be the electrophysiological signatures of Parkinson’s (PD) and Huntington’s diseases (HD). In PD, hyperactivity of the striato-pallidal (STR-GPe) pathway is thought to be responsible for the increase of the extracellular GABAergic concentrations in the GPe and participate to the hypoactivity of pallidal neurons observed in experimental Parkinsonism. In contrast, during HD, it is recognized that the hyperactivity of GPe neurons is due to the degeneration of striato-pallidal neurons and thus to the reduction of the main source of pallidal GABAergic inhibition. However, the molecular mechanisms involved in these modifications of pallidal activity are not well characterized. Therefore, using PD and HD animal models, the 6-OHDA rodents and the R6-1 transgenic mice respectively, we have performed molecular biology, immunohistochemistry and electrophysiological in vitro experiments in order to better understand the origin of GABAergic transmission alterations leading to changes in electrophysiological activity of GPe neurons into these two pathologies. My main results show the apparition of a tonic GABAergic inhibition due to a deficit of GABA uptake in PD and a early stage reduction of GABAergic synaptic transmission in HD. Altogether, these results suggest that alterations of GABAergic transmission contribute to the pathophysiology of PD and HD.
35

L'aide informelle apportée aux personnes jeunes atteintes de handicap neurologique : analyse économique de quatre modèles neuro-pathologiques / Informal care in neurodisability : an economic analysis in four neuropathological models

Bayen, Eléonore 26 June 2015 (has links)
L’objet de cette thèse est de réaliser une analyse économique du champ de l’aide informelle des personnes adultes jeunes vivant à domicile et atteintes de maladie neurologique grave. La question de recherche posée concerne l’articulation entre l’organisation de l’aide informelle et la cinétique de la pathologie neurologique. La méthodologie repose sur la construction de quatre modèles neuro-pathologiques et économiques d’une part, et sur la constitution de quatre cohortes représentatives, comportant chacune une centaine de binômes « aidant-aidés » d’autre part. Ainsi, les modèles de la pathologie brutale avec handicap résiduel stabilisé, de la pathologie progressive avec handicap croissant, de la pathologie à cinétique déficitaire rapide, de la pathologie dégénérative héréditaire sont-ils respectivement illustrés par le traumatisme crânien, la sclérose en plaques, la tumeur cérébrale et la maladie de Huntington. Nos travaux (1) mettent en évidence les caractéristiques sur le plan économique des aidants informels (conjoints jeunes) qui sont fortement impliqués dans la production du soin, experts d’un accompagnement complexe et déstabilisés dans leur trajectoire professionnelle (2) font la démonstration de la prédétermination forte de la cinétique de la pathologie neurologique sur les comportements d’aide informelle à travers différents indicateurs temporels dont la prise en compte s’avère incontournable pour l’analyse économique (3) montrent la nécessité d’avoir recours à une mesure bidimensionnelle (subjective et objective) dans l’analyse du fardeau des aidants informels. Une telle mesure souligne d’une part l’insuffisance du recours à l’aide professionnelle publique et d’autre part l’impact sur les aidants des troubles cognitivo-comportementaux (handicap invisible) et de la phase neuro-palliative à domicile d’une pathologie neurologique grave. Ces résultats ouvrent des perspectives pour la mise en place de mesures d’action publiques en France dans le champ complexe du handicap neurologique. / The purpose of this thesis is to achieve an economic analysis of informal caregiving of young adults living at home and suffering from a severe neurological disease. The research questions the relationship between the organization of informal care and kinetics of neurological pathology. The methodology is based on the construction of four neuro-pathological and economic models on the one hand, and on the constitution of four representative cohorts, each with a hundred pairs of "patients-caregivers" on the other. Thus, models of brutal disease stabilized with residual disability, progressive disease with increasing disability, fast kinetics disease and neuro-degenerative hereditary disease are respectively illustrated by traumatic brain injury, multiple sclerosis, malignant brain tumor and Huntington's Disease. Our work (1) highlights the economic characteristics of informal caregivers (young spouses) who are highly involved in the production of care, expert of complex care and therapeutic pathways and destabilized in their professional careers (2) demonstrates that the kinetics of neurological disease predicts the economic behavior of informal caregivers : taking account of different time indicators is crucial for economic analysis in neurodisability (3) shows that a two-dimensional subjective and objective outcome measure is necessary in the analysis of the burden of informal caregivers. Such a double indicator first stresses the inadequate use of publicly funded professional care ; it also points out the impact of cognitive-behavioral disorders (so-called “invisible disability”) and of the home neuro-palliative phase on caregivers in case of a severe neurological disease. These results open perspectives for the development of public action measures in France in the complex field of neurological disability.
36

CRMP1 protein complexes modulate polyQ-mediated Htt aggregation and toxicity in neurons

Bounab, Yacine 25 August 2010 (has links)
Chorea Huntington (HD) ist eine neurodegenerative Erkrankung, die durch Ablagerungen von N-terminal Polyglutamin-reichen Huntingtin (Htt) -Fragmenten in den betroffenen Neuronen charakterisiert ist. Das mutierte Htt (mHtt) Protein wird ubiquitär exprimiert. Das zellspezifische Absterben von „medium-sized spiny neurons“ (MSN) wird jedoch im Striatum von HD Patienten verursacht (Albin, 1995). Es wird angenommen, dass Striatum-spezifische Proteine, die mit Htt interagieren, eine wichtige Rolle in der Pathogenese von HD spielen (Ross, 1995). Protein-Protein-Interaktionsstudien haben gezeigt, dass einige der Htt-Interaktionspartner mit unlöslichen Htt-Ablagerungen in den Gehirnen von HD-Patienten kolokalisieren und die Bildung von Protein-Aggregaten beeinflussen (Goehler, 2004). Kürzlich wurde durch die Integration von Genexpressions- und Interaktionsdaten ein Striatum-spezifisches Protein-Interaktionsnetzwerk erstellt (Chaurasia, unveröffentlichte Daten). Eines der identifizierten Proteine ist CRMP1 (collapsin response mediator protein 1), das spezifisch in Neuronen exprimiert wird und möglicherweise eine wichtige Rolle bei der Pathogenese von HD spielt. Experimentelle Untersuchungen mithilfe eines Filter-Retardationsassays zeigten, dass CRMP1 die Anordnung von Htt zu fibrillären, SDS-unlöslichen Aggregaten verringert. Durch Rasterkraftmikroskopie wurde der direkte Effekt von CRMP1 auf den Aggregationsprozess von Htt bestätigt. Ko-Immunopräzipitationsstudien zeigten, dass CRMP1 und Htt in Säugerzellen unter physiologischen Bedingungen miteinander interagieren. Es wurde nachgewiesen, dass CRMP1 die Polyglutamin-abhängige Aggregation und Toxizität von Htt in Zell- und Drosophila-Modellen von HD moduliert. Außerdem konnte CRMP1 in neuronalen Ablagerungen in R6/2 Mäusegehirnen und dessen selektive Spaltung durch Calpaine gezeigt werden. Diese Ergebnisse deuten darauf hin, dass die Lokalisation und Funktion von CRMP1 bei der Krankheitsentstehung verändert werden. / Huntington’s disease (HD) is a neurodegenerative disorder characterized by the accumulation of N-terminal polyglutamine (polyQ)-containing huntingtin (Htt) fragments in affected neurons. The mutant Htt (mHtt) protein is ubiquitously expressed but causes specific dysfunction and death of striatal medium-sized spiny neurons (MSNs) (Albin, 1995). It is assumed that striatum specific proteins interacting with Htt might play an important role in HD pathogenesis (Ross, 1995). Previous protein-protein interaction (PPI) studies demonstrated that many Htt-interacting proteins colocalize with insoluble Htt inclusions in HD brains and modulate the mHtt phenotype (Goehler 2004). A striatum-specific, dysregulated PPI network has been created recently by integrating PPI networks with information from gene expression profiling data (Chaurasia, unpublished data). One of the identified dysregulated proteins potentially involved in HD pathogenesis was the neuron-specific collapsin response-mediator protein 1 (CRMP1). Here, I show that CRMP1 reduces the self-assembly of SDS-insoluble mHtt protein aggregates in vitro, indicating a direct role of CRMP1 on the mHtt aggregation process. Coimmunoprecipitation studies showed that CRMP1 and Htt associate in mammalian cells under physiological conditions. In addition, CRMP1 localizes to abnormal neuronal inclusions and efficiently modulates polyQ-mediated Htt aggregation and toxicity in cell and Drosophila models of HD. This suggests that dysfunction of the protein is crucial for disease pathogenesis. Finally, I observed that CRMP1 localizes to neuronal inclusions and is selectively cleaved by calpains in R6/2 mouse brains, indicating that its distribution and function are altered in pathogenesis. In conclusion, this study presents new findings on the function of CRMP1 and its role in the pathogenesis of HD. The protein interacts with Htt and modulates its aggregation and toxicity, in this way influencing the molecular course of the disease.
37

MECHANISMS OF TRINUCLEOTIDE REPEAT INSTABILITY DURING DNA SYNTHESIS

Chan, Kara Y. 01 January 2019 (has links)
Genomic instability, in the form of gene mutations, insertions/deletions, and gene amplifications, is one of the hallmarks in many types of cancers and other inheritable genetic disorders. Trinucleotide repeat (TNR) disorders, such as Huntington’s disease (HD) and Myotonic dystrophy (DM) can be inherited and repeats may be extended through subsequent generations. However, it is not clear how the CAG repeats expand through generations in HD. Two possible repeat expansion mechanisms include: 1) polymerase mediated repeat extension; 2) persistent TNR hairpin structure formation persisting in the genome resulting in expansion after subsequent cell division. Recent in vitro studies suggested that a family A translesion polymerase, polymerase θ (Polθ), was able to synthesize DNA larger than the template DNA. Clinical and in vivo studies showed either overexpression or knock down of Polθ caused poor survival in breast cancer patients and genomic instability. However, the role of Polθ in TNR expansion remains unelucidated. Therefore, we hypothesize that Polθ can directly cause TNR expansion during DNA synthesis. The investigation of the functional properties of Polθ during DNA replication and TNR synthesis will provide insight for the mechanism of TNR expansion through generations.
38

Effects of herpes simplex virus 1 (HSV-1) infection on nuclear amyloid aggregation

Arone Blanco, Maria January 2018 (has links)
Huntington’s disease (HD) and Spinocerebellar ataxia (SCA) are incurable neurodegenerative diseases that affect the central nervous system. Amyloids, highly organized protein aggregates, are a hallmark for many neurodegenerative diseases. The presence and accumulation of amyloids are toxic and constitute the major cause of neuron cell death. Both genetic and environmental factors contribute to the onset and progression of these diseases. However, despite intensive research, the underlying cause remains unclear. The role of viral infection as an environmental factor in the context of neurodegenerative diseases has not received much attention. The purpose of this study is to investigate the effects of Herpes Simplex Virus 1 (HSV-1) infection on nuclear amyloid aggregation in model cell lines of HD and SCA. The research process consists mainly of laboratory work which involved the use of several molecular techniques used in the field of biotechnology. The work comprises cultivating cells, infecting cells with HSV-1, Fluorescence microscopy, Western Blot and isolation and detection of amyloids. Western Blot is used for the analysis of specific proteins associated with protein aggregation in HD and SCA. The techniques used for detecting amyloids are Dot Blot and Antibody-staining of amyloids in cells. The results from Western Blot showed that aggregates changed in the presence of the virus. This pattern is observed for both HD and SCA1 cell lines. A big effort is done in this study to optimize Dot Blot as it is method that could be applied in every lab. Normalization of samples proved to be the most challenging part with Dot Blot. No definitive conclusions can be drawn from the Dot Blot results as reproducibility and sensitivity were lacking. This work addresses some of the difficulties encountered when working with detection of amyloids especially Dot Blot. Antibody-staining of amyloids showed that amyloids were formed in the presence of virus in comparison to non-infected. To conclude, aggregates changed, and amyloids were formed in the presence of virus. These results point to the fact that HSV-1 infection could be involved in the process of nuclear amyloid aggregation. The data presented in this thesis will need further investigation and characterization to identify the precise role of viral-induced amyloid formation in HD and SCA patient cells. / Huntingtons sjukdom (HD) och Spinocerebellära ataxier (SCA) är obotliga neurodegenerativa sjukdomar som påverkar det centrala nervsystemet. Amyloid, proteinaggregat som har en viss konformation är ett kännemärke för många neurodegenerativa sjukdomar. Ackumulering av dessa amyloider är toxiskt och är den främsta orsaken till att nervceller dör. Både genetiska faktorer och miljöfaktorer bidrar till uppkomsten och progressionen av dessa sjukdomar. Trots intensiv forskning är den bakomliggande orsaken emellertid fortfarande oklar. Virusinfektion som en potentiell miljöfaktor har i detta sammanhang inte fått mycket uppmärksamhet. Syftet med denna studie är att undersöka effekterna av Herpes Simplex Virus 1 (HSV-1) infektion på amyloid aggregering i modellcellinjer av HD och SCA. Forskningsarbetet bestod i huvudsakligen av experimentellt arbete med hjälp av flera molekylära tekniker inom bioteknikområdet som cell odling, infektering av celler med HSV-1, fluorescensmikroskopi, Western Blot och isolering och detektion av amyloider. Western Blot användes for att analysera specifika proteiner associerade med protein aggregering i HD och SCA. Amyloider detekterades med Dot Blot och med antikroppar specifika för amyloider. Resultat från Western Blot visade att amyloiderna förändras i virusinfekterade celler. Detta mönster observerades i både HD and SCA1 cellinjer. En stor bemöda görs i denna studie för att optimera Dot Blot eftersom det är en metod som kan användas i alla laboratorier. Normalisering visade sig vara det svåraste med detektion av amyloider. Inga definitiva slutsatser kan dras från dessa experiment, eftersom reproducerbarhet och känslighet var bristande. Detta arbete tar upp några av de svårigheter som uppstod vid arbetande med detektion av amyloider speciellt Dot Blot. Detektion av amyloider med antikropp visade att amyloider bildades till stor utsträckning i infekterade cellinjer i jämförelse med icke-infekterade. Sammanfattningsvis, amyloider förändrades och amyloider bildades i närvaro av virus. Dessa resultat indikerar på att HSV-1 infektion skulle kunna vara involverad i processen av amyloid aggregering. De presenterade uppgifter i detta examensarbete är preliminära och behöver följas upp med ytterligare studier för att identifiera virusens exakta roll i amyloid bildning i HD och SCA patient celler.
39

Transcriptional basis of Huntington’s Disease: Gene expression analysis indicate increased immune responses in the brain and mitochondrial dysfunction in adipose tissues of HD model mouse / Transkriptionell grund för Huntingtons sjukdom: Genuttrycksanalys indikerar ökade immunförsvar i hjärnan och mitokondriell dysfunktion i fettvävnader hos HD-modellmus

Salim, Intisar January 2023 (has links)
Huntingtons sjukdom (HD) är ett neurodegenerativt tillstånd som orsakas av mutationer i huntingtin gen (Htt), och resulterar till upprepade glutamin (polyQ) i Htt-proteinet. Muterad Htt kan inte vika sig ordentligt och börjar därför aggregera i celler. I detta projekt undersöktes molekylära mekanismerna bakom HD genom att analysera genuttryck hos musvävnader och jämföra detta med biomarkörer identifierats hos HD-patienter. För närvarande finns det ingen behandling för att stoppa utveckling av HD. Därför behövs det mer kunskap om sjukdomen. Projektets mål var att öka vår förståelse på regulatoriska mekanismer som ligger bakom den neurodegenerativa sjukdomen och identifiera potentiella diagnostiska biomarkörer. För denna studie användes mRNA-seq-data från 11 distinkta vävnader från Q175 HD-möss. Vävnader som analyserades inkluderar hjärnstammen, cerebellum, corpus callosum, hippocampus och thalamus/hypothalamus, fettvävnader (brun, vit nära gonad och vit nära tarm) och andra vävnader så som hjärta, hud och gastrocnemius muskel. Efter en grundlig genomgång av HD-litteraturen valdes biomarkörer som sedan undersöktes för mRNA-uttryck hos Q175-möss via Gene Set Enrichment Analysis (GSEA). Genuttrycksförändringar hos HD-möss visade sig vara vävnadsspecifika, med betydande effekter på hud och fettvävnader, men mindre effekter hos hjärnvävnader. Även om gemensamma mRNA-förändringar inte hittas bland de olika vävnader, uppvisade relaterade vävnader förändringar i samma pathways. Immunsvar och ribosomal dysfunktion var utbredd, men varje hjärnregion visade unika förändringar relaterade till sömn, synaptisk signalering och energiprocesser. Muskel- och fettvävnader uppvisar också distinkta mönstrar. Detta understryker vikten av vävnadsspecifik biomarkörforskning för neurodegenerativa sjukdomar. / Huntington's disease (HD) is a neurodegenerative condition caused by a mutation in the Huntingtin (Htt) gene which results in glutamine repeats (polyQ) and a longer Htt-protein. The mutated Htt-protein cannot fold properly and thus, is prone to aggregate in cells. There is currently no treatment available to stop the progression of HD. Therefore, there is a need for more knowledge regarding the disease. This project investigates the molecular mechanisms underlying HD by analysing gene expression program in wild type (Wt) and HD mice. The objective is to investigate changes in gene regulatory mechanisms underlying the neurodegenerative disease and identify potential diagnostic markers. For this study, mRNA-seq data from 11 distinct tissues from Q175 HD model mouse were analysed. These tissues included brainstem, cerebellum, corpus callosum, hippocampus, and thalamus/hypothalamus, adipose tissues (brown, white near gonad and white near intestine), heart, skin and gastrocnemius muscle. Following a thorough literature review, biomarkers of HD were chosen, and their expression investigated in the HD mouse using Gene Set Enrichment Analysis (GSEA). Gene expression changes in HD mouse were specific to different tissues, with significant changes identified in skin and adipose tissues, while smaller changes were detected in the brain tissues. While common changes across the 11 tissues were not found, related tissues exhibited alterations in the same pathways. Changes in immune response and ribosomal dysfunction were widespread across tissues. Moreover, each brain region showed unique changes related to sleep, synaptic signalling, and energy processes. Muscle and adipose tissues displayed distinctive patterns. These results underscore the importance of tissue-specific biomarker research for neurodegenerative diseases.
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A quantitative interaction screen for neurodegenerative disease proteins

Hosp, Fabian 07 February 2013 (has links)
Der erste Teil dieser Arbeit beschreibt die Durchführung eines quantitativen Ansatzes zur Detektion von Protein-Protein-Interaktionen (PPI) mit einem Schwerpunkt für Proteine, die in vier häufigen neurodegenerativen Krankheiten eine Rolle spielen: die Alzheimer-, Parkinson- und Huntington-Krankheit, sowie die spinozerebelläre Ataxie Typ 1 (SCA1). Die Interaktionsstudie kombiniert die stabile Isotopen-Markierung von Aminosäuren in der Zellkultur mit der Affinitätsaufreinigung von Proteinen und hochauflösender Massenspektrometrie. Dieser Ansatz zielt darauf ab, systematisch die Interaktionspartner von gesunden und krankheitsassoziierten Proteinvarianten zu identifizieren und zu quantifizieren. Darüber hinaus wurde das quantitative Interaktionsverfahren genutzt, um zu prüfen ob PPI durch krankheitsassoziierte Mutationen beeinträchtigt werden. Neben der Validierung möglicher Nebeneffekte, sowie dem Vergleich mit Informationen über PPI aus der Literatur, wurde ein Teil der identifizierten Interaktoren durch zusätzliche Koimmunopräzipitations-Experimente in zwei verschiedenen Zelllinien bestätigt. Mit Hilfe von Drosophila SCA1-Krankheitsmodellen und in Kombination mit RNAi-basierter Stummschaltung identifizierter Interaktoren wurde festgestellt, dass ein großer Teil der Kandidaten Neurodegeneration in vivo beeinflusst. Zusätzlich wurden die Alzheimer-spezifischen PPI-Daten auf genomweite Assoziationsstudien übertragen. Bemerkenswerterweise waren Polymorphismen in einzelnen Nukleotiden in den Genen zugehöriger Interaktoren wahrscheinlicher mit solchen Genen assoziiert, die eine Prädisposition für die Alzheimer-Krankheit haben, als mit zufällig ausgewählten Genen. Schlussendlich konnten Folgeexperimente für zwei ausgewählte Interaktionspartner den Nachweis für eine bislang unbekannte Rolle der N-Glykosylierung und einen neuen Zusammenhang zwischen dem RNA-bindenden Protein LRPPRC und mitochondrialer Dysfunktion in der Alzheimer-Krankheit vorlegen. / The first part of the present thesis describes the establishment of a quantitative protein-protein interaction (PPI) screen with a focus on proteins involved in four common neurodegenerative diseases (NDDs): Alzheimer’s disease (AD), Parkinson’s disease (PD), Huntington’s disease (HD) and spinocerebellar ataxia type 1 (SCA1). The interaction screen combines stable-isotope labeling by amino acids in cell culture (SILAC) with protein affinity purification and high-resolution mass spectrometry. This approach aims to systematically identify and quantify interaction partners of normal and known disease-associated variants of proteins involved in NDDs. Moreover, the quantitative interaction screen was employed to study how PPIs are affected by disease-associated mutations. Along with validation of possible off-target effects and comparison of the data with literature-reported PPIs, a subset of identified interactors was validated by additional co-immunoprecipitation experiments in two different cell lines. Utilizing Drosophila models for SCA1 in combination with RNAi-mediated silencing of identified interactors, a large fraction of candidates was observed to also affect neurodegeneration in vivo. In addition, AD-specific PPI data was mapped to patient cohort data obtained from genome-wide associations studies. Notably, single-nucleotide polymorphisms in the genes of interactors of the disease-associated protein variants were more likely associated with susceptibility to AD than randomly selected genes. Finally, functional follow-ups for two selected interaction partners provided evidence for a yet unreported role of N-linked glycosylation in AD, and a novel link to mitochondrial dysfunction in AD by means of the RNA-binding protein LRPPRC.

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