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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

Application of ELISA for the diagnosis and epidemiology of hepatitiis A

Duermeyer, Willem, January 1980 (has links)
Thesis (doctoral)--Rijksuniversiteit te Utrecht, 1980. / English, foreword and summary in Dutch. Includes bibliographical references.
32

Intermediate und Enzyme des alternativen Terpenbiosyntheseweges

Hecht, Stefan Hermann Karl. January 2002 (has links) (PDF)
München, Techn. Univ., Diss., 2002.
33

Expression ausgewählter Enzyme und phylogenetische Untersuchung der pflanzlichen Aminosäurebiosynthese

Hansen, Andrea. Unknown Date (has links) (PDF)
Techn. Universiẗat, Diss., 2002--Braunschweig.
34

Immobilisierung von Enzymen auf Polyestervliesen und deren Anwendungen

Nouaimi-Bachmann, Meriem. Unknown Date (has links) (PDF)
Universiẗat, Diss., 2003--Tübingen.
35

Elektronentransfer zwischen Redoxkomplexen aus Thermus thermophilus und Paracoccus denitrificans Interaktion löslicher Module und Membranproteinexpression /

Maneg, Oliver. Unknown Date (has links)
Universiẗat, Diss., 2004--Frankfurt (Main).
36

Studies to influence the carbon metabolism of the C3 plant Nicotiana tabacum by expressing heterologous enzymes involved in C4-like CO2 fixation

Li, Jun. Unknown Date (has links) (PDF)
Techn. Hochsch., Diss., 2003--Aachen.
37

Technologický postup výroby čerstvých sýrů s využitím rostlinných syřidel

Auerová, Markéta January 2014 (has links)
This work is focused on issue of manufacture of fresh cheeses with using plant coagulants.Cheese is milk product, which is produced by precipitation of milk protein by rennet or other suitable coagulant agents. Plant extracts have been used to coagulate milk in antiquity, although there are very few knowledges of their properties. A lot of interest in vegetable coagulants was in 1960, when the increasing consumption of cheese was not enough of animal rennet. The literary section described the manufacture of cheese, characteristic of different type of coagulant and properties of different plant coagulants, which are used in different parts of the world. The aim of practical part was made fresh cheeses coagulated by plant extracts. The cheeses coagulated at different temperatures. It was measured pH and mass of arising cheese. It was also carried out microbiological analysis of cheeses, plant coagulants and milk. The work concentrated mainly on optimizing the temperature coagulation of milk and cheese properties.
38

Vlivy působící na aktivitu syřidel při sýření mléka

Lysek, Adam January 2019 (has links)
This thesis examines the issue of rennets. In this work the basic structure of milk is described, then characteristics and rennets division and it´s principle during milk coagulation. Furthermore I have tried to describe factors, which influence thein efficiency and principles during using rennets. This work also includes working proces of milk curdling and dose calculation. In practical part the aktivity of rennet was observed during different storage conditions, influence on yield and quality of curd after 2 minutes dripping. The strength of rennet was fixed, the dose of the rennet needed to curd 1000 l of milk. For the setting was used recombinant milk powder according to IDF requirements. The samples of rennets were tried on the semi-skimmed milk and the whole milk. The four months storage in the fridge has dropped the activity of rennet down 19 % and during laboratory temperature down 27 %. To cut down the activity of rennets has increased the dose of rennet needed for curdling 1000 l of milk and the price of rennet. The most stability was rennet Laktosin, the most degradation rennet Laktochym.
39

Spatio-temporal Expression Patterns of the Serotonin Synthesis Enzymes TPH1 and TPH2 and Effects of Acute Stress / Regional-zeitliche Expressionsmuster der beiden Serotoninsynthese-Enzyme TPH1 und TPH2 und Effekte durch akuten Stress

Kriegebaum, Claudia January 2009 (has links) (PDF)
Several lines of evidence implicate a dysregulation of tryptophan hydroxylase (TPH)-dependent serotonin (5-HT) synthesis in emotions and stress and point to their potential relevance to the etiology and pathogenesis of various neuropsychiatric disorders. However, the differential expression pattern of the two isoforms TPH1 and TPH2 which encode two forms of the rate-limiting enzyme of 5-HT synthesis is controversial. Here, a comprehensive spatio-temporal analysis clarifies TPH1 and TPH2 expression during pre- and postnatal development of the mouse brain and in adult human brain as well as in peripheral organs including the pineal gland. Four different methods (real time PCR, in situ hybridization, immunohistochemistry and Western blot analysis) were performed to systematically control for tissue-, species- and isoform-specific expression on both the pre- and posttranslational level. TPH2 expression was consistently detected in the raphe nuclei, as well as in fibres in the deep pineal gland and in the gastrointestinal tract. Although TPH1 expression was found in these peripheral tissues, no significant TPH1 expression was detected in the brain, neither during murine development, nor in mouse and human adult brain. Also under conditions like stress and clearing the tissue from blood cells, no changes in expression levels were detectable. Furthermore, the reuptake of 5-HT into the presynaptic neuron by the serotonin transporter (SERT) is the major mechanism terminating the neurotransmitter signal. Thus, mice with a deletion in the Sert gene (Sert KO mice) provide an adequate model for human affective disorders to study lifelong modified 5-HT homeostasis in interaction with stressful life events. To further explore the role of TPH isoforms, Tph1 and Tph2 expression was studied in the raphe nuclei of Sert deficient mice under normal conditions as well as following exposure to acute immobilization stress. Interestingly, no statistically significant changes in expression were detected. Moreover, in comparison to Tph2, no relevant Tph1 expression was detected in the brain independent from genotype, gender and treatment confirming expression in data from native animals. Raphe neurons of a brain-specific Tph2 conditional knockout (cKO) model were completely devoid of Tph2-positive neurons and consequently 5-HT in the brain, with no compensatory activation of Tph1 expression. In addition, a time-specific Tph2 inducible (i) KO mouse provides a brain-specific knockdown model during adult life, resulting in a highly reduced number of Tph2-positive cells and 5-HT in the brain. Intriguingly, expression studies detected no obvious alteration in expression of 5-HT system-associated genes in these brain-specific Tph2 knockout and knockdown models. The findings on the one hand confirm the specificity of Tph2 in brain 5-HT synthesis across the lifespan and on the other hand indicate that neither developmental nor adult Tph2-dependent 5-HT synthesis is required for normal formation of the serotonergic system, although Tph1 does not compensate for the lack of 5-HT in the brain of Tph2 KO models. A further aim of this thesis was to investigate the expression of the neuropeptide oxytocin, which is primarily produced in the hypothalamus and released for instance in response to stimulation of 5-HT and selective serotonin reuptake inhibitors (SSRIs). Oxytocin acts as a neuromodulator within the central nervous system (CNS) and is critically involved in mediating pain modulation, anxiolytic-like effects and decrease of stress response, thereby reducing the risk for emotional disorders. In this study, the expression levels of oxytocin in different brain regions of interest (cortex, hippocampus, amygdala, hypothalamus and raphe nuclei) from female and male wildtype (WT) and Sert KO mice with or without exposure to acute immobilization stress were investigated. Results showed significantly higher expression levels of oxytocin in brain regions which are involved in the regulation of emotional stimuli (amygdala and hippocampus) of stressed male WT mice, whereas male Sert KO as well as female WT and Sert KO mice lack these stress-induced changes. These findings are in accordance with the hypothesis of oxytocin being necessary for protection against stress, depressive mood and anxiety but suggest gender-dependent differences. The lack of altered oxytocin expression in Sert KO mice also indicates a modulation of the oxytocin response by the serotonergic system and provides novel research perspectives with respect to altered response of Sert KO mice to stress and anxiety inducing stimuli. / Durch zahlreiche Untersuchungen ist belegt, dass eine gestörte Tryptophan-Hydroxylase (TPH)-abhängige Serotonin (5-HT)-Synthese an einer veränderten emotionalen Reaktion sowie einer veränderten Stress-Antwort beteiligt ist und damit auch in der Ätiologie und Pathogenese psychischer Erkrankungen eine Rolle spielt. Dennoch werden nach wie vor die unterschiedlichen Expressionsmuster der beiden Isoformen TPH1 und TPH2, die für zwei Formen des Schrittmacherenzyms der 5-HT-Synthese kodieren, kontrovers diskutiert. Zentrales Anliegen dieser Arbeit ist daher eine Klärung der TPH1- und TPH2-Expression während der prä- und postnatalen Entwicklung des murinen Gehirns, sowie im adulten humanen Gehirn und in einigen peripheren Organen und der Zirbeldrüse. Durch die Verwendung von vier verschiedenen Methoden (Real time-PCR, In situ-Hybridisierung, Immunhistochemie und Westernblot-Analysen) wurde systematisch die Gewebs- und Isoform-spezifische Expression in Maus und Mensch auf prä- und posttranslationaler Ebene nachgewiesen. TPH2-Expression wurde Spezies-übergreifend in den Raphe-Kernen des Hirnstamms wie auch in Fasern zur Zirbeldrüse und im Gastrointestinaltrakt detektiert. Auch TPH1 konnte in diesen peripheren Organen (die Zirbeldrüse eingeschlossen) nachgewiesen werden, jedoch fand sich keine signifikante TPH1-Expression im Gehirn, weder während der Entwicklung des Maus-Gehirns noch im humanen und murinen adulten Gehirn. Auch durch veränderte Bedingungen wie der Entfernung von Blutzellen aus dem Gewebe oder der Anwendung von akutem Immobilisierungsstress konnte keine Änderung der Expression gemessen werden. Sert Knockout-Mäuse, stellen ein geeignetes Tiermodell für affektive Erkrankungen dar, insbesondere um eine lebenslang veränderte 5-HT-Homöostase in Verbindung mit belastenden Lebensereignissen zu untersuchen. Um die Bedeutung der TPH-Isoformen und deren korrekte Expression weiter zu untersuchen, wurde die Tph1- und Tph2-Expression in den Raphe-Kernen von Sert Knockout (KO)-Mäusen unter normalen Bedingungen und nach akutem Stress getestet. Interessanterweise konnten keine statistisch signifikanten Expressionsänderungen entdeckt werden. Mehr noch, relativ zu Tph2 konnte unabhängig von Behandlung, Geschlecht oder Genotyp keine relevante Tph1-Expression im Gehirn gemessen werden, was wiederum die Expressionsdaten aus nativen Tieren unterstützt. Die Raphe-Neurone eines Gehirn-spezifischen konditionalen Tph2 KO-Modells zeigten weder Tph2-positive Zellen noch 5-HT, wiesen aber auch keine kompensatorische Aktivierung der Tph1-Expression im Gehirn auf. Zusätzlich repräsentiert eine zeit-spezifische, induzierbare KO-Maus ein Gehirn-spezifisches Tph2 Knockdown-Modell ab dem Erwachsenenalter, das eine stark reduzierte Anzahl an Tph2-positiven Zellen und 5-HT im Gehirn aufweist. Expressionsuntersuchungen zeigten interessanterweise, dass diese Gehirn-spezifischen Tph2 Knockout- und Knockdown-Modelle keine sichtliche Änderung in der Expression von 5-HT-System-assoziierten Genen aufweisen. Diese Ergebnisse bestätigen zum einen, dass die 5-HT-Synthese im murinen Gehirn während der kompletten Lebensspanne ausschließlich durch Tph2 katalysiert wird und weisen außerdem darauf hin, dass eine Tph2-abhängige 5-HT-Synthese weder während der Entwicklung noch im Erwachsenalter für die Ausbildung eines normalen serotonergen Systems benötigt wird, obwohl Tph1 den Verlust des 5-HT-Vorkommens im Gehirn der Tph2 KO-Mäuse nicht kompensiert. Weiterhin beschäftigt sich diese Arbeit mit der Expression von Oxytocin, das hauptsächlich im Hypothalamus produziert. Oxytocin ist maßgeblich bei Angst-lösenden Effekten sowie einer verringerten Stressantwort beteiligt. In dieser Studie wurde die Expression von Oxytocin in verschiedenen Gehirnregionen (Cortex, Hippocampus, Amygdala, Hypothalamus und Raphe Nuclei) von weiblichen und männlichen Wildtyp- (WT) und Sert KO-Mäusen getestet, die entweder unter normalen Bedingungen gehalten wurden oder eine Stunde lang akutem Immobilisierungsstress ausgesetzt waren. Die Ergebnisse zeigten eine signifikant höhere Oxytocin-Expression in Gehirnregionen, die für die emotionale Reizverarbeitung zuständig sind (Amygdala und Hippocampus) in gestressten männlichen WT-Mäusen, während männliche Sert KO-Mäuse sowie weibliche WT- und Sert KO-Mäuse diese Stress-bedingten Unterschiede nicht aufwiesen. Diese Befunde sind im Einklang mit der Hypothese, dass Oxytocin eine schützende Rolle bei Stress, depressiver Stimmung und Angst übernimmt, weisen jedoch auf einen Geschlechterunterschied hin. Ferner legt das Fehlen einer veränderten Oxytocin-Expression in Sert KO-Mäusen eine Modulation der Oxytocin-Expression durch das serotonerge System nahe, was neue Forschungsperspektiven über eine veränderte Reaktion auf Stress und Angst-auslösende Reize in Sert KO-Mäusen eröffnet.
40

Úloha protein-proteinových interakcí v regulaci signálních proteinů a enzymů / Role of protein-protein interactions in regulation of signalling proteins and enzymes

Košek, Dalibor January 2015 (has links)
EN Protein-protein interactions have an exceptional position among other mechanisms in the regulation of signal transduction. Their systematic investigation is very important and logical step in the process of understanding to the transduction and its mechanisms at a molecular level. During my Ph.D. I was particularly interested in three important processes. ASK1 kinase is well-known initiator of the apoptosis. Under physiological conditions it is maintained in an inactive state by its two interaction partners the 14-3-3 protein and TRX1. These two proteins dissociate in the presence of reactive oxygen species by unclear mechanism and the kinase is therefore activated. The next process is an interaction between the 14-3-3 protein and phosducin and investigation of their role in the G protein signalling especially important in the biochemistry of vision. The third process is an activation of protein Nth1 through the interaction with Bmh1, yeast analog of the 14-3-3 protein, and calcium cations. I employed various biophysical method, particularly analytical ultracentrifugation, in order to explain molecular mechanisms of described processes. These techniques were used to solve the low-resolution structures of complexes TRX1 and the 14-3-3 protein with corresponding binding domains of ASK1. These...

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