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dc.contributor.advisorPrudnikova, Taťána
dc.contributor.authorGuger, Isabella
dc.date.accessioned2023-03-07T11:02:24Z
dc.date.available2023-03-07T11:02:24Z
dc.date.issued2019
dc.date.submitted2019-05-09
dc.identifier.urihttps://dspace.jcu.cz/handle/20.500.14390/40725
dc.description.abstractThe aim of this study was to learn the basic and advanced crystallization techniques on the model protein Lysozyme, to crystalize the monotopic integral membrane protein human oxidosqualene cyclase hOSC-WT and its mutant variant hOSC-580W and to optimize the initial crystallization experiments. Moreover, the 3D hOSC protein structure was modelled and compared with already known structure of oxidosqualene cyclase.cze
dc.format47p
dc.format47p
dc.language.isoeng
dc.publisherJihočeská univerzitacze
dc.rightsBez omezení
dc.titleCrystallization and modelling studies of human oxydosqualene cyclase hOSC wild type and 580W mutant variantcze
dc.title.alternativeCrystallization and modelling studies of human oxydosqualene cyclase hOSC wild type and 580W mutant varianteng
dc.typebakalářská prácecze
dc.identifier.stag49541
dc.description.abstract-translatedThe aim of this study was to learn the basic and advanced crystallization techniques on the model protein Lysozyme, to crystalize the monotopic integral membrane protein human oxidosqualene cyclase hOSC-WT and its mutant variant hOSC-580W and to optimize the initial crystallization experiments. Moreover, the 3D hOSC protein structure was modelled and compared with already known structure of oxidosqualene cyclase.eng
dc.date.accepted2019-06-17
dc.description.departmentPřírodovědecká fakultacze
dc.thesis.degree-disciplineBiological Chemistrycze
dc.thesis.degree-grantorJihočeská univerzita. Přírodovědecká fakultacze
dc.thesis.degree-nameBc.
dc.thesis.degree-programBiochemistrycze
dc.description.gradeDokončená práce s úspěšnou obhajoboucze
dc.contributor.refereeGrinkevich, Pavel


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