Genetic engineering and molecular characterization of yeast strain expressing hybrid human-yeast squalene synthase as a tool for anti-cholesterol drug assessment
Autor: | Agata Leszczynska, Beata Burzynska, Maciej Sojka, Joanna Komaszylo, Danuta Plochocka, Monika Gora, Suman Kapur, Witold Danikiewicz, Agata Maciejak, Monika Wysocka-Kapcinska, Ewa Swiezewska, Ilona Warchol, Dorota Tulacz |
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Rok vydání: | 2015 |
Předmět: |
0301 basic medicine
Squalene Squalene monooxygenase Recombinant Fusion Proteins Saccharomyces cerevisiae Biology Applied Microbiology and Biotechnology 03 medical and health sciences chemistry.chemical_compound 0302 clinical medicine Dolichol Biosynthesis Ergosterol Humans Triglycerides Lanosterol Anticholesteremic Agents Zaragozic acid General Medicine Up-Regulation 030104 developmental biology Cholesterol Farnesyl-Diphosphate Farnesyltransferase chemistry Biochemistry lipids (amino acids peptides and proteins) Mevalonate pathway Genetic Engineering 030217 neurology & neurosurgery Biotechnology |
Zdroj: | Journal of applied microbiology. 120(4) |
ISSN: | 1365-2672 |
Popis: | Aims The main objective of the study is molecular and biological characterization of the human-yeast hybrid squalene synthase, as a promising target for treatment of hypercholesterolemia. Methods and Results The human-yeast hybrid squalene synthase, with 67% amino acids, including the catalytic site derived from human enzyme, was expressed in S. cerevisiae strain deleted of its own squalene synthase gene. The constructed strain has a decreased level of sterols compared to the control strain. The mevalonate pathway and sterol biosynthesis genes are induced and the level of triacylglycerols is increased. Treatment of the strain with rosuvastatin or zaragozic acid, two mevalonate pathway inhibitors, decreased the amounts of squalene, lanosterol and ergosterol, and up-regulated expression of several genes encoding enzymes responsible for biosynthesis of ergosterol precursors. Conversely, expression of the majority genes implicated in the biosynthesis of other mevalonate pathway end-products, ubiquinone and dolichol, was down-regulated. Conclusions The S. cerevisiae strain constructed in this study enables to investigate the physiological and molecular effects of inhibitors on cell functioning. Significance and Impact of the Study The yeast strain expressing hybrid squalene synthase with the catalytic core of human enzyme is a convenient tool for efficient screening for novel inhibitors of cholesterol-lowering properties. This article is protected by copyright. All rights reserved. |
Databáze: | OpenAIRE |
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