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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.
81

Potential New Drugs in Lymphoma

Delforoush, Maryam January 2016 (has links)
Lymphomas are malignant tumours arising from cells in the lymphatic system. They are classified as B-cell lymphomas, T-cell lymphomas and Hodgkin lymphoma (HL). Of the B-cell lymphomas, one of the most common is diffuse large B-cell lymphoma (DLBCL). Many patients with lymphomas can be successfully treated however patients who relapse or are refractory have a poor prognosis, warranting further investigations to identify potential targets and develop novel drugs. Picropodophyllin (PPP), a potent and selective inhibitor of IGF-1R, inhibits malignant cell growth with low or no toxicity on normal cells in preclinical models. In paper I, we investigated the potential benefits of using PPP against DLBCL and found that the anti-tumor effects of PPP might possibly be explained by IGF-1R-unrelated mechanism(s). However, the inhibitory effects of PPP on lymphoma cells together with its low toxicity in vivo makes it a promising drug candidate for treatment. Melflufen, a derivative of melphalan, is currently being evaluated in a clinical phase I/II trial in relapsed or refractory multiple myeloma. In paper II, we confirmed previous reports of superior potency of melflufen over melphalan. Being active in cell lines and primary cultures of lymphoma cells as well as in a xenograft model in mice, melflufen considered being a candidate for further evaluation in treatment. bAP-15, a novel inhibitor of proteasome activity, inhibits ubiquitin specific peptidase 14 (USP14) and ubiquitin carboxyl-terminal hydrolase L5 (UCHL5). In paper III, we investigated the activity of b-AP15 in DLBCL and HL cell lines and compared the results to standard drugs used in treatment. Results showed inhibition of the proteasome and growth inhibition/cytotoxicity with IC50-values in the micromolar range. Treatment failure and lack of clinical benefit of proteasome inhibitors like bortezomib in DLBCL patients inspired us investigating for possible new targets, with major focus on proteasome inhibitors in DLBCL. In paper IV, we suggested that UCHL5 and/or USP14, as new targets for proteasome inhibitors in DLBCL, be further evaluated. The findings in this thesis suggest that PPP, Melflufen and b-AP15 are potential candidates for clinical drug development and UCHL5 and/or USP14 are new potential targets for proteasome inhibitors in DLBCL.
82

VLIV ROSTOUCÍ POKRYVNOSTI INVAZNÍHO TRNOVNÍKU AKÁTU NA PTAČÍ SPOLEČENSTVA V LESNÍCH POROSTECH / THE EFFECT OF AN INCREASING COVERAGE OF INVASIVE BLACK LOCUST ON BIRD COMMUNITIES IN FOREST STANDS

Kroftová, Magdalena January 2016 (has links)
Biological invasions are one of the most important threats to global biodiversity and they were also found to negatively affect some bird species. Despite relatively large number of scientific studies dealing with the impacts of invasive plants on bird communities, their results are inconsistent, especially it is not clear how birds respond to increasing levels of expansion of invasive species in native species stands. Moreover, bird responses to plant invasions seem to depend on the ecological characteristics of individual bird species. This study contributes to elucidation of this problem; I investigated the impacts of black locust (Robinia pseudoacacia) invasion on bird communities in three types of forest stands with different levels of invasion: in stands containing solely the native oak (Quercus spp.), in partially invaded stands with different proportions of black locust and oak (mixed stands) and in pure black locust stands. Previous studies that examined birds in pure oak and pure black locust stands have found that they differ markedly in vegetation structure, but not in the total number of bird species. However, habitat specialists were associated with the oak stands, while generalists with the black locust stands. Therefore, I predicted that (1) the total species richness will be...
83

Investigating the Substrate Specificity of the Equivalent Papain-like Protease 2 Domain of nsp3 across Alpha- and Beta-Coronaviruses

Jozlyn Clasman (6632228) 11 June 2019 (has links)
<div>The papain-like protease (PLP) domain of nonstructural protein 3 (nsp3) of the coronavirus (CoV) genome promotes viral replication by processing the CoV polyprotein (protease) and also antagonize innate immune responses by deubiquitinating (DUB) and deISGylating (deISG) host substrates. Selectively removing the DUB/deISG activities of PLP while keeping the protease activity intact is a potential strategy for designing a live attenuated virus. However, it is unclear in the literature the precise mechanism by which PLPs support CoV evasion of the innate immune system. Deciphering the substrate specificity of PLPs for host ubiquitin (Ub) and interferon stimulated gene 15 (ISG15) can therefore help in the design of PLP mutants that selectively lack one activity for evaluating the DUB and deISG mechanism in CoV pathogenesis and replication. </div><div> In this dissertation, we investigate the structure and function of the single PLP (PLpro) from beta-CoVs, severe acute respiratory syndrome coronavirus (SARS-CoV) and Middle East respiratory syndrome coronavirus (MERS-CoV), which are dangerous viral pathogens that emerged from a zoonotic source to cause infectious disease in the human population. Additionally, we translate the knowledge gained to the equivalent PLP2 from alpha-CoV porcine epidemic diarrhea virus (PEDV) and feline infectious peritonitis virus (FIPV), which cause fatal disease in suckling piglets on industrial pork farms and household cats, respectively. The primary objective of this work is to rationally design PLP mutants across beta- and alpha-CoVs to help attenuate CoV infection, as no antiviral or vaccine exist for human CoVs and the efficacy of PEDV vaccines are an ongoing research topic. </div><div><br></div><div>In Chapter 1, different human, animal, and the bat origin CoV strains are introduced. The CoV life-cycle and virion structure are outlined, along with the replicase complex for viral replication. The multidomain nsp3 from alpha- and beta-CoV genomes are also described with a focus on the PLP domain and its proposed cleavage sites of the viral polyprotein. The discovery of the first viral protease DUB and the multiple activities of PLPs are defined, which includes a proposed model of how DUB versus deISG activities may act in the innate immune response. This leads into the therapeutic potential of PLP for an antiviral or live attenuated vaccine, which is followed by the introduction of live attenuated vaccines and the reverse genetics system. Next, proof of concept studies on PLP2 mutants are described and the introduction is concluded by stating the ultimate goal for the design of PLP mutants.</div><div><br></div><div>In Chapter 2, we hypothesize that the flanking ubiquitin-like (Ubl2) domain of MERS-CoV PLpro is not required for its enzymatic function. We characterize the specific activity, kinetics, substrate specificity, and inhibition of the PLpro enzyme with and without the Ubl2 domain and reveal that the Ubl2 domain does not significantly alter PLpro function. We determine the structure of the core PLpro, smallest catalytic unit to 1.9 Å resolution and observed no structural changes compared to the wild-type. Additionally, we demonstrate that a purported MERS-CoV PLpro inhibitor is nonselective in non-reducing conditions and should not be pursed for therapeutic use. We show that the core PLpro enzyme i.e. without the Ubl2 domain is a stable and robust construct for crystallization and is also thermally stable based on thermal melting studies with utility for structure-based drug design. </div><div><br></div><div>In Chapter 3, we shed light on the specificity of SARS-CoV PLpro towards Ub versus ISG15 by characterizing the specific activity and kinetic parameters of SARS-CoV PLpro mutants. In addition, the structure of SARS-CoV PLpro in complex with the C-terminal domain of ISG15 is determined and compared with the Ub-bound structure. Based on the structure and kinetic results, the altered specificities of SARS-CoV PLpro mutants Arg167Glu, Met209Ala, and Gln233Glu are compared with the wild-type. Arg167Glu mutant exhibits DUB hyperactivity and is expected to adopt a more favorable interaction with the Arg42 of Ub. At the same time, ARG167GLU contains a shorter side-chain that hinders interaction with the unique Trp123 of ISG15 for deISG activity compared to the wild-type. These results aid in the development of SARS-CoV PLpro mutants that have directed shifts in substrate specificity for Ub versus ISG15. </div><div><br></div><div>In Chapter 4, the process and antiviral activity of ISGylation is reviewed and how viruses can modulate host-derived versus virus-derived machineries to counteract ISGylation for viral infection. MERS-CoV PLpro is cross-reactive for Ub, but less is known about its specificity towards ISG15. In this study, we determine the structure of MERS-CoV PLpro bound with ISG15 to 2.3 Å resolution and reveal a small hydrophobic pocket of ISG15 that consists of P130 and W123, which differs from Ub hydrophobic patch. We design and determine the kinetic parameters for 13 PLpro mutants and reveal that MERS-CoV PLpro only has a single ubiquitin recognition (SUb1) site. Kinetic studies show that removing the charge of the R1649 greatly enhances DUB/protease activity while mutating in an Arg near R42 of Ub or ISG15 hydrophobic region is detrimental to both DUB/deISG activities. Kinetic experiments and probe-reactivity assays showed that Val1691Arg, Val1691Lys, and His1652Arg mutants are drastically reduced DUB/deISG activities compared to the wild-type. Overall, MERS-CoV PLpro mutants with alter kinetic profiles will be useful for discovery tools and DUB/deISG deficient mutants are great candidates for removing host cell antagonism activity by PLpro for live attenuated vaccines.</div><div><br></div><div>In Chapter 5, the goal is to translate the knowledge gained in Chapters 2-4 on beta-CoVs PLpro and evaluate the substrate specificity of alpha-CoVs FIPV and PEDV PLP2 for mutagenesis experiments. First, we design and purify the core PLP2 enzymes for kinetics. PLP2s are efficient DUBs that prefer Ub to ISG15 in vitro, and this preference is conserved in beta-CoV MHV PLP2 as well as alpha-CoV NL63 PLP2. We determine the structure of alpha-CoV PEDV PLP2 to 1.95 Å resolution and reveal the unique Zn-finger coordinating Cys3-His arrangement of the alpha-CoV genus that differs from past beta-CoV PLP crystal structures. To determine residues of the SUb1 site, we generate a homology model of FIPV PLP2 and overlay our PLP2 structures with MERS-CoV PLpro bound with Ub. In addition, we create electrostatic surface maps across coronaviral PLP subfamilies to evaluate the charge distribution of the SUb1 for the rational design of several FIPV and PEDV PLP2 mutants. We evaluate the turnover of PLP mutants for FRET-based substrates and reveal that His101ArgFIPV and Asn101ArgPEDV are drastically reduced in Ub-AMC activity while their peptide activities are within 2-fold of the wild-type. These mutants show delayed reactivity for Ub probes and no longer cleave Ub-chains displaying isopeptide bonds compared to the wild-type. Results from this study reveal a hot spot in both alpha- and beta-CoVs that can be used to selectively remove DUB activity of PLPs for generating a DUB deficient PLP enzyme. </div><div><br></div><div>In this dissertation, we investigate the substrate specificity of PLPs across alpha- and beta-CoVs and develop a fingerprint for Ub and also shed light on ISG15 recognition. Specifically, hot spots were identified in the SUb1 site of different PLPs, which recognize R42 and hydrophobic Ile44 of Ub. Position 97-98 of PLPs can be used to remove DUB activity by substituting an Arg, but usually effect protease function. Substituting an Arg at position 101 and 136 of coronaviral PLPs serve as the best strategy to remove DUB function while not hindering active site functionality. The DUB/deISG deficient mutants described will be useful for inhibiting the ability of PLPs to function in the innate immune response. Ultimately, this work provides a guide for identifying attenuating mutants in existing CoVs for live attenuated vaccines and also a blueprint for engineering PLPs from new emerging CoVs. </div>
84

Differences in photosynthesis and plant water status between coppice and high forest

Matoušková, Marie January 2017 (has links)
This diploma thesis focuses on comparison of photosynthesis and tree water status between high forest and coppice of Quercus petraea (Matt.) Liebl. Four different types of management were investigated during vegetation season 2016: high forest, coppice on clear-felled site, coppice with standards and seedlings. Methods of leaf gas exchange and water potential measurements allowed to study transpiration, photosynthesis and its response to light and CO2 concentration and leaf water potential. All these physiological parameters were studied as linked to weather conditions and various levels of drought stress. When the soil water was not limiting factor trees in all variants of experiment behaved similarly. However, during mild to severe drought stress the coppice was superior to seedlings and to high forest. It showed higher photosynthesis rate (2.49 umol m-2 s-1) than seedlings (0.86 umol m-2 s-1), both under moderate water stress. Coppice also had higher stomatal conductance and quantum yield of fluorescence than high forest which allowed to higher photosynthetic rates. The lowest value of predawn water potential was in high forest (-3.27 MPa) whereas highest in coppice (-2.01 MPa) which indicated better water availability and lower evapotranspiration demands imposed on coppice sprouts due to their lower height and therefore lower overall aerodynamic conductance. Response of net photosynthesis to CO2 concentration revealed higher carboxylation rates in high forest than in coppice but low stomatal conductance was a reason for overall lower photosynthetic rates in high forest than in coppice. Due to its superiority under water stress coppice forest may be a viable option for forest management on dry sites during the climate change.
85

Gene overexpression screens to identify limitations on the productivity of cyanobacteria growth

Willi, Tobias January 2020 (has links)
Cyanobacteria are a model organism for photosynthesis and the Calvin cycle, and a promising chassis for 4th generation biofuel production. There are many ongoing efforts to improve the performance of cyanobacteria, in terms of CO2 fixation and production rate of biofuels. One straightforward way to improve CO2 fixation could be to overexpress the genes of limiting enzymes. In this project, we used a high-throughput method to test the overexpression of thousands of genes in cyanobacteria and measure the effect on growth rate. We created barcoded overexpression libraries, consisting of gene fragments from different cyanobacteria strains and transformed them into a model cyanobacterium, Synechocystis PCC 6803. We then cultivated the transformed cyanobacteria libraries and screened for effects of increased gene copy number on both maximum growth rate and robustness of growth under stress conditions. The cell populations were cultivated in a turbidostat, resulting in competitive growth between transformants. The relative abundance of each mutant was estimated using deep sequencing. Fitness scores, for each gene show how expression of that gene affects growth rate. This method, competitive growth and tracking of mutant populations with deep sequencing, is a high throughput method for screening a large proportion of genes from several organism at once, allowing the identification of trans-species effects as well as the effect of single genes on the metabolism of the host cell. / Cyanobakterier är en modellorganism för fotosyntes och Calvin-cykeln och ett lovande chassi för fjärde generationens biobränsleproduktion. Det finns många pågående ansträngningar för att förbättra cyanobakteriens prestanda med avseende på CO2-fixering och produktionshastighet för biobränslen. Ett enkelt sätt att förbättra CO2-fixering kan vara att överuttrycka generna för begränsande enzymer. I detta projekt använde vi en metod med hög kapacitet för att testa överuttryck av tusentals gener i cyanobakterier och mäta effekten på tillväxthastigheten. Vi skapade streckkodade överuttrycksbibliotek, bestående av genfragment från olika arter av cyanobakterier och transformerade in dem i en modellorganism för cyanobakterium, Synechocystis PCC 6803. Vi odlade sedan de transformerade biblioteken och screenade efter effekten av ökade antal genkopior på både maximal tillväxthastighet och robusthet hos tillväxt under stressförhållanden. Cellpopulationerna odlades i en Turbidostat, vilket resulterade i konkurrerande tillväxt mellan transformanter. Den relativa mängden av varje mutant uppskattades med användning av djup sekvensering. "Fitnesspoäng" för varje gen visar hur uttrycket av den genen påverkar tillväxthastigheten. Denna metod, konkurrerande tillväxt och spårning av mutantpopulationer med djup sekvensering, är en metod med hög genomströmning för att screena en stor andel gener från flera organismer samtidigt, vilket möjliggör identifiering av trans-art effekter såväl som effekten av enstaka gener på värdcellens metabolism.
86

Étude fonctionnelle d’un nouveau complexe multi-enzymatique régulant l’épigénome

Daou, Salima 09 1900 (has links)
L’ubiquitination, une modification post-traductionnelle importante pour le contrôle de nombreux processus cellulaires, est une réaction réversible. La réaction inverse, nommée déubiquitination est catalysée par les déubiquitinases (DUB). Nous nous sommes intéressés dans nos travaux à étudier l’ubiquitination de l’histone H2A (H2Aub), au niveau des résidus lysines 118 et 119 (K118/K119), une marque épigénétique impliquée dans la régulation de la prolifération cellulaire et la réparation de l’ADN. Le régulateur transcriptionnel BAP1, une déubiquitinase nucléaire, a été initialement identifié pour sa capacité à promouvoir la fonction suppressive de tumeurs de BRCA1. BAP1 forme un complexe multi-protéique avec plusieurs facteurs transcriptionnels et sa fonction principale est la déubiquitination de H2Aub. Plusieurs études ont démontré que BAP1 est un gène suppresseur de tumeurs majeur et qu’il est largement muté et inactivé dans une multitude de cancers. En effet, BAP1 émerge comme étant la DUB la plus mutée au niveau des cancers. Cependant, le ou les mécanismes d’action et de régulation du complexe BAP1 restent très peu connus. Dans cette étude nous nous sommes intéressés à la caractérisation moléculaire et fonctionnelle des partenaires protéiques de BAP1. De manière significative nous avons caractérisé un mécanisme unique de régulation entre deux composants majeurs du complexe BAP1 à savoir, HCF-1 et OGT. En effet, nous avons démontré que HCF-1 est requis pour maintenir le niveau protéique de OGT et que cette dernière est indispensable pour la maturation protéolytique de HCF-1 en promouvant son clivage par O-GlcNAcylation, une signalisation cellulaire nécessaire au bon fonctionnement de HCF-1. Également, nous avons découvert un nouveau mécanisme de régulation de BAP1 par l’ubiquitine ligase atypique UBE2O. En effet, UBE2O agit comme un régulateur négatif de BAP1 puisque l’ubiquitination de ce dernier induit sa séquestration dans le cytoplasme et l’inhibition de sa fonction suppressive de tumeurs. D’autre part nous nous sommes penchés sur la caractérisation de l’association de BAP1 avec deux facteurs de la famille des protéines Polycombes nommés ASXL1 et ASXL2 (ASXL1/2). Nous avons investigué le rôle de BAP1/ASXL1/2, particulièrement dans les mécanismes de déubiquitination et suppression de tumeurs. Nous avons démontré que BAP1 interagit directement iii via son domaine C-terminale avec le même domaine ASXM de ASXL1/2 formant ainsi deux complexes mutuellement exclusifs indispensables pour induire l’activité déubiquitinase de BAP1. De manière significative, ASXM s’associe avec BAP1 pour créer un nouveau domaine composite de liaison à l’ubiquitine. Ces interactions BAP1/ASXL1/2 régulent la progression harmonieuse du cycle cellulaire. De plus, la surexpression de BAP1 et de ASXL2 au niveau des fibroblastes induit la sénescence de manière dépendante de leurs interactions. D’autre part, nous avons identifié des mutations de cancers au niveau de BAP1 le rendant incapable de lier ASXL1/2, d’exercer sa fonction d’autodéubiquitination et de ce fait d’agir comme suppresseur de tumeurs. Ainsi nous avons révélé un lien étroit entre le gène suppresseur de tumeurs BAP1, son activité déubiquitinase et le contrôle de la prolifération cellulaire. / The reverse reaction of ubiquitination, a crucial post-translational modification, is catalyzed by deubiquitinases (DUBs). BAP1 is an ubiquitously expressed nuclear DUB that recently emerged as an important tumor suppressor highly mutated and inactivated in an increasing number of cancers of diverse origins. Both somatic and germline mutations with loss of heterozygosity were observed in tumors, making BAP1 the most mutated DUB in human malignancies. We previously reported that BAP1 is a component of a large multi-protein complex that includes several transcription regulators. The Drosophila homologue of BAP1, Calypso, forms the Polycomb-repressive DUB (PR-DUB) complex with Additional Sex Comb, ASX. This complex catalyzes the deubiquitination of histone H2A, an essential chromatin modification that regulates gene expression. Despite the ever increasing number of findings describing the occurrence of BAP1 mutations in cancers, few studies investigated the mechanisms of action of this DUB as a tumor suppressor. Therefore, the biological function and the mechanism of action and regulation of BAP1 remains largely uncharacterized. In the work described in this thesis, we investigated the roles of BAP1 partners in modulating its catalytic activity and tumor suppressor function. More specifically we discovered a unique mechanism of regulation between two major components of BAP1 complexes, namely HCF-1 and OGT. Indeed, HCF-1 is important for the maintenance of the cellular levels of OGT. OGT, in turn, is required for the proper proteolytic maturation of HCF-1 by promoting its O-GlcNAcylation. This signaling event is required for HCF-1 function as a cell cycle regulator. On the other hand, we deciphered an intricate mechanism of regulation of BAP1 by the atypical E2/E3 ligase, UBE2O. UBE2O, promote the multi-monoubiquitination of BAP1 on its NLS mediating its cytoplasmic sequestration and thus inhibition of its tumor suppressor function. Another aspect of modulation of BAP1 H2Aub catalysis is provided by the association of BAP1 with ASXL1 and ASXL2 (ASXL1/ASXL2), two orthologs of ASX. We investigated the role of BAP1/ASXL1/2, particularly in the mechanisms of deubiquitination and tumor suppression. We have demonstrated that BAP1 interacts directly via its C-terminal domain with the ASXM domain of ASXL1/2, thus forming two mutually exclusive complexes. Significantly, ASXM promote, through assembly with BAP1, the generation of a composite ubiquitin binding domain (CUBI), indispensable for inducing the deubiquitinase activity of BAP1 towards H2Aub. The interactions between BAP1 and ASXL1/2 regulate cell cycle progression. In addition, overexpression of BAP1 or ASXL2 in fibroblasts induces senescence in CTD- and ASXM-dependent manner. We also identified cancer-derived mutation of BAP1 that selectively abolish its interaction with ASXL1 and ASXL2 as well as its H2A deubiquitinase activity. Significantly, this mutant suppressed senescence induced by BAP1 overexpression. Thus we provided a link between the tumor suppressor BAP1, its deubiquitinase activity and the control of cell proliferation.
87

Un nouveau mécanisme de régulation des complexes épigénétiques BAP1/ASXLs par ubiquitination

Barbour, Haithem 05 1900 (has links)
L’ubiquitination est une modification post-traductionnelle des protéines qui consiste à attacher, d’une manière covalente, le groupement ubiquitine sur un résidu lysine de la protéine cible. Cette modification peut avoir un impact considérable sur la fonction, la localisation et la stabilité de ces cibles. Une fois établie par des enzymes appelées E3 ligases, l’ubiquitination peut être enlevée par des enzymes spécifiques appelées déubiquitinases, modulant ainsi les effets causés par cette modification. BAP1 (BRCA1-Associated Protein 1) est une déubiquitinase de la famille des UCH (Ubiquitin C-terminal Hydrolases) qui a été initialement identifiée comme partenaire du suppresseur de tumeurs BRCA1 (BReast Cancer Associated gene 1). De nombreux groupes de recherche, incluant le nôtre, ont montré que BAP1 est associée avec d’autres cofacteurs formant un large complexe multiprotéique. Ce dernier est impliqué dans plusieurs processus cellulaires comme la transcription des gènes, la régulation de la chromatine, la coordination du cycle cellulaire et la réponse aux dommages à l’ADN. La cible majeure de BAP1 est l’histone H2A ubiquitinée sur la lysine 119, une marque d’histone qui a été souvent associée avec une conformation répressive de la chromatine. Quels sont les mécanismes régulant le complexe BAP1 lui permettant d’exécuter ces fonctions biologiques? Cela implique-t-il des modifications post-traductionnelles touchant les partenaires de BAP1 ? Ces questions restent encore sans réponse définitive. Ainsi, les objectifs de cette thèse sont de caractériser le mécanisme et la fonction du complexe BAP1 en étudiant les modifications post-traductionnelles de ses partenaires. Pour répondre à ces questions nous avons étudié les modifications post-traductionnelles touchant BAP1 et ses cofacteurs mutuellement exclusifs ASXL1 et ASXL2 (Additional Sex Comb-like 1,2). Nous avons démontré qu’ASXL1 et ASXL2 sont monoubiquitinés uniquement lorsqu’ils sont associés à BAP1. Sachant que les complexes BAP1/ASXLs sont conservés au cours de l’évolution, nous avons aussi démontré que la monoubiquitination des ASXLs est conservée chez la Drosophile. En utilisant des méthodes de déplétion de protéines par siARN et CRISPR/Cas9 ainsi que des mutants de perte de fonction de BAP1 et ASXL2, nous avons identifié les enzymes responsables de la monoubiquitination des ASXLs ainsi que leur effet sur l’activité catalytique de BAP1. D’autre part, nous avons étudié le développement chez la Drosophile ainsi que le cycle cellulaire des cellules humaines pour identifier la fonction biologique de la monoubiquitination de ASXL2. Nos résultats démontrent que la monoubiquitination d’ASXL2 sur la lysine 370 en présence de BAP1 est une modification post-traductionnelle conservée et catalysée directement par la famille UBE2Es des enzymes de conjugaison de l’ubiquitine (UBE2E1,2,3 chez les mammifères et UbcD2 chez la Drosophile). Cette monoubiquitination stimule l’activité catalytique de BAP1 chez les mammifères et de son orthologue Calypso chez la Drosophile envers H2Aub. Le blocage de la monoubiquitination des ASXLs par des mutations ciblant la lysine K370 induit une inhibition de l’activité de BAP1, ce qui cause une dérégulation du cycle cellulaire chez les cellules mammifères et une transformation homéotique haltère-aile chez la Drosophile. De plus, il nous a été possible de constater l’importance de cette monoubiquitination dans le cancer en démontrant la forte corrélation d’expression de BAP1/ASXL2 et les UBE2Es au niveau du mésotheliome, un cancer connu pour la dérégulation de BAP1. Nos résultats indiquent l’importance des modifications post-traductionnelles, dont la monoubiquitination, dans la régulation de la fonction et la stabilité du complexe BAP1. De plus, nous décrivons un nouveau mécanisme d’activation d’une deubiquitinase par la monoubiquitination de son cofacteur. D’autres études seront nécessaires afin de comprendre le lien entre l’activation de BAP1/ASXL2 par monoubiquitination et la fonction suppresseur de tumeurs de BAP1 via la deubiquitination d’H2Aub. D’autre part, nous avons fait l’observation que la déplétion de la deubiquitinase associée à la particule régulatrice du protéasome, PSMD14, induit non seulement une réduction drastique d’H2Aub dans la cellule, mais aussi une mort cellulaire rapide. Ceci nous a poussé initialement à investiguer l’implication de l’activité catalytique du protéasome dans la régulation d’H2Aub en lien avec la mort cellulaire. Malgré le fait que nous n’ayons pas trouvé un lien direct entre PSMD14 et la deubiquitination d’H2Aub, nous avons identifié plusieurs candidats (DUBs et E2s) impliqués dans l’induction de la mort cellulaire tout en surmontant une résistance acquise contre des inhibiteurs ciblant l’activité catalytique du protéasome. Ces candidats pourraient représenter des cibles intéressantes pour développer des inhibiteurs spécifiques afin de contrecarrer la résistance aux inhibiteurs du protéasome. / Ubiquitination is a post-translational modification of proteins that involves covalently attaching the ubiquitin moiety to the lysine residues of the target protein. This modification has been reported to have a significant impact on the function, localization and stability of these targets. Once established by enzymes called E3 ligases, ubiquitination can be removed by specific enzymes called deubiquitinases, thus modulating the effects caused by this modification. BAP1 (or BRCA1-Associated Protein1) is a deubiquitinase, from the UCH (Ubiquitin C-terminal Hydrolases) family, that was originally identified as a partner of the BRCA1 (BReast Cancer Associated gene 1) tumor suppressor. We and other research groups have shown that BAP1 is associated with other co-factors forming a multi-protein complex involved in several cellular processes such as gene transcription, chromatin regulation, cell cycle regulation and DNA damage response. The major target of BAP1 is ubiquitinated histone H2A, a histone mark that has been frequently associated with a repressive chromatin conformation. What are the mechanisms regulating the BAP1 complex allowing it to perform its biological functions? Does this involve post-translational modifications affecting BAP1 partners? These questions are still incompletely answered. Thus, the objectives of our studies are to characterize the mechanism and the function of the BAP1 complex by studying the post-translational modifications that could affect its obligate partners including ASXLs. To address these questions, we studied the post-translational modifications affecting BAP1 and its two mutually exclusive co-factors ASXL1 and ASXL2 (Additional Sex Comb-like 1,2). We demonstrated that ASXL1 and ASXL2 are mono-ubiquitinated only when associated with BAP1. Taking into account that the BAP1/ASXLs complexes are highly conserved during evolution, we also demonstrated that the mono-ubiquitination of ASXLs is important for Drosophila development. Using RNAi and CRISPR/Cas9 gene depletion methods and loss-of-function mutants of BAP1 and ASXL2, we identified the precise site of ASXLs ubiquitination, the enzymes responsible for establishing this mono-ubiquitination as well as its effect on catalytic activity of BAP1. On the other hand, we investigated Drosophila development as well as human cell cycle progression to identify the biological function of ASXLs mono-ubiquitination. Our results indicate that the mono-ubiquitination of ASXL2 on lysine 370 in the presence of BAP1 is a conserved post-translational modification catalyzed directly by the UBE2E family of ubiquitin-conjugating enzymes (UBE2E1, 2, 3 in mammals and UbcD2 in Drosophila). This mono-ubiquitination event stimulates the catalytic activity of BAP1 in mammals and its Drosophila ortholog Calypso towards H2Aub in vivo and in vitro. Blocking the mono-ubiquitination of ASXLs, by mutations targeting lysine K370, induces an inhibition of BAP1 catalytic activity causing a deregulation of human cell cycle progression and a haltere-to-wing homeotic transformation in Drosophila. In addition, we were able to assess the importance of ASXLs mono-ubiquitination in cancer using the mesothelioma tumor model, demonstrating a strong correlation between the expression of BAP1/ASXL2 and UBE2Es. Our results indicate the importance of post-translational modifications, including mono-ubiquitination, in the regulation of the function and stability of the BAP1 complex. Moreover, we describe a novel mechanism of activation of a deubiquitinase by the mono-ubiquitination of its co-factor. Further studies will be needed to shed more light on the link between BAP1/ASXLs activation by mono-ubiquitination and the tumor suppressor function of BAP1 via H2Aub deubiquitination. On the other hand, we have noticed that the depletion of PSMD14, a deubiquitinase associated with the proteasome regulatory particle, induces not only a drastic reduction of H2Aub in the cell, but also rapid cell death. This prompted us initially to investigate the involvement of the catalytic activity of the proteasome in the regulation of H2Aub in connection with cell death. Although we did not find a direct link between PSMD14 and H2Aub deubiquitination, we identified several candidates (DUBs and E2s) involved in the induction of cell death while overcoming acquired resistance against proteasome catalytic inhibitors. These candidates may represent attractive targets for developing specific inhibitors to counteract resistance to proteasome inhibitors.
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Ubiquitin-phosphonamidates and -phosphonothiolates for DUB targeting and protein ubiquitination

Schwagerus, Sergej 18 January 2022 (has links)
Im ersten Teil dieser Arbeit wurde die Staudinger-Phosphonit-Reaktion auf Azidohomoalanin-haltiges Ubiquitin angewendet, um ortsspezifisch modifizierte Alkinphosphonamidat-Ubiquitine zu erzeugen. Diese Ubiquitin-basierten Sonden wurden bei neutralem pH-Wert in selektiven Konjugationen mit DUBs, die ein Cystein im aktiven Zentrum beinhalten, eingesetzt, auch in Anwesenheit anderer Thiole. Dabei beobachteten wir DUB-Spezifitäten in Abhängigkeit von der Phosphonamidat-Position innerhalb der Sonde. Die DUB-Selektivität konnte auch an Pull-Down-Experimenten aus Zelllysaten gezeigt werden. Zusätzlich konnte die Cystein-Selektivität der Sonde an ausgewählten konjugierten DUBs mittels MS/MS-Analyse nachgewiesen werden. Wir beobachteten auch unterschiedliche Ausmaße der DUB-Inhibition bei der Inkubation mit den verschiedenen Phosphonamidat-Sonden. Im Hinblick auf das DUB-Targeting in lebenden Zellen untersuchten wir auch Bedingungen für zellpenetrierende Peptid-konjugierte Ubiquitine für einen Transport der Sonde in das Zytosol der Zellen. Im zweiten Teil der Arbeit haben wir die neuartige, chemisch induzierte Phosphonothiolat Elektrophile für Thiol-Konjugation angewendet, um unhydrolysierbare ubiquitinierte Substrate herzustellen. Es gelang uns, ein hoch elektrophiles Ubiquitin-Vinylphosphonothiolat mit guter Ausbeute zu erzeugen. Wir konnten die frisch hergestellte Sonde in Konjugationen mit Cysteinen an ausgewählten Proteinen einsetzen. Um unser Konzept zu etablieren, generierten wir ein monoubiquitiniertes α-Synuclein und demonstrierten dessen strukturelle Integrität in einer enzymatischen Ubiquitinierung des Konjugats. Außerdem stellten wir ein künstlich K48-verknüpftes Diubiquitin her, das von spezifischen Antikörpern ähnlich erkannt wurde wie das native K48-verknüpfte Diubiquitin, aber in Gegenwart von DUBs sich als stabil erwies. Das Ubiquitin-Vinylphosphonothiolat zeigte ebenfalls eine selektive DUB-Konjugation, wenn nur kurze Inkubationszeiten verwendet wurden. / In the first part of this thesis a Staudinger-phosphonite reaction was applied on azidohomoalanine-containing ubiquitin to generate site-specifically modified alkynephosphonamidate ubiquitins. These ubiquitin-based probes were utilized in selective conjugations of active site cysteine-containing DUBs at neutral pH, even in the presence of other thiols. Furthermore, we observed DUB specificities depending on the phosphonamidate position within the probe. The selectivity could also be demonstrated in pull-down experiments from cell lysates. Moreover, the probe’s cysteine selectivity within chosen conjugated DUBs could be determined using MS/MS analysis. Consequently, we observed varying extents of DUB inhibition upon incubation with the different phosphonamidate probes. For DUB targeting in living cells we also investigated conditions of cell penetrating peptide conjugated ubiquitin in order to successfully deliver them to the cytosol. In the second part of this thesis, we applied the novel chemically induced phosphonothiolate electrophiles for thiol conjugation to produce unhydrolyzable ubiquitinated substrates. Starting from a disulfide-activated cysteine ubiquitin mutant, we managed to generate a highly electrophilic ubiquitin vinylphosphonothiolate in satisfactory yield. We could apply the freshly prepared probe in conjugations with cysteines on selected proteins, in which the conjugation product showed to be remarkably stable. To establish our concept, we prepared monoubiquitinated α-synuclein and demonstrated its structural integrity in the performance of an enzymatical ubiquitination of the conjugate. Furthermore, we produced an artificially K48-linked diubiquitin, which was similarly recognized by specific antibodies as the native K48-linked diubiquitin and was not hydrolyzed in the presence of DUBs. The ubiquitin vinylphosphonothiolate displayed also selective DUB conjugation, when only short incubations were used.
89

Židé na Šumavě a v Pošumaví - historie a současnost vybraných obcí / The Jews on the Sumava - History and Present

LAZAROVIČOVÁ, Alena January 2016 (has links)
This thesis deals with the charting of jewish settlement in Sumava and Posumavi, and also with history and present of the selected villages - Vimperk, Čkyně, Vlachovo Březí, Volyně, Dub, Prachatice and Volary. The first part characterises the jewish settlement in Sumava and Posumavi. Furthermore, it describes aforementioned villages and occupied with their jewish history, sights, personalities and current condition. The second part contains questionaire with 10 basic questions, regarding to jewish history at Prachaticko, and also contains comparison of three surveyed schools: Elementary school Husinec, Elementary school Vlachovo Březí and Prachatice High school. In every surveyed school, there were questioned scholars of 8th and 9th classes. The best results reached scholars of Prachatice High school, then of Elementary school Vlachovo Březí and the last place tooked by scholars of Elementary school Husinec. Despite the fact that this issue is not occupied until 9th class, knowledge of scholars in 8th class is high.
90

Regulation of Normal and Malignant T-cell Homeostasis by Protein Degradation Adaptors

Umphred-Wilson, Katharine 26 May 2023 (has links)
No description available.

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