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首页> 外文期刊>BMC Biotechnology >The effects of statins on the mevalonic acid pathway in recombinant yeast strains expressing human HMG-CoA reductase
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The effects of statins on the mevalonic acid pathway in recombinant yeast strains expressing human HMG-CoA reductase

机译:他汀类药物对表达人HMG-CoA还原酶的重组酵母菌株甲羟戊酸途径的影响

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Background The yeast Saccharomyces cerevisiae can be a useful model for studying cellular mechanisms related to sterol synthesis in humans due to the high similarity of the mevalonate pathway between these organisms. This metabolic pathway plays a key role in multiple cellular processes by synthesizing sterol and nonsterol isoprenoids. Statins are well-known inhibitors of 3-hydroxy-3-methylglutaryl- CoA reductase (HMGR), the key enzyme of the cholesterol synthesis pathway. However, the effects of statins extend beyond their cholesterol-lowering action, since inhibition of HMGR decreases the synthesis of all products downstream in the mevalonate pathway. Using transgenic yeast expressing human HMGR or either yeast HMGR isoenzyme we studied the effects of simvastatin, atorvastatin, fluvastatin and rosuvastatin on the cell metabolism. Results Statins decreased sterol pools, prominently reducing sterol precursors content while only moderately lowering ergosterol level. Expression of genes encoding enzymes involved in sterol biosynthesis was induced, while genes from nonsterol isoprenoid pathways, such as coenzyme Q and dolichol biosynthesis or protein prenylation, were diversely affected by statin treatment. Statins increased the level of human HMGR protein substantially and only slightly affected the levels of Rer2 and Coq3 proteins involved in non-sterol isoprenoid biosynthesis. Conclusion Statins influence the sterol pool, gene expression and protein levels of enzymes from the sterol and nonsterol isoprenoid biosynthesis branches and this effect depends on the type of statin administered. Our model system is a cheap and convenient tool for characterizing individual statins or screening for novel ones, and could also be helpful in individualized selection of the most efficient HMGR inhibitors leading to the best response and minimizing serious side effects.
机译:背景技术由于这些生物体之间的甲羟戊酸途径高度相似,因此,酿酒酵母可以作为研究人类固醇合成的细胞机制的有用模型。该代谢途径通过合成固醇和非固醇类异戊二烯在多种细胞过程中起关键作用。他汀类药物是胆固醇合成途径的关键酶3-羟基-3-甲基戊二酰辅酶A还原酶(HMGR)的著名抑制剂。然而,他汀类药物的作用超出了其降低胆固醇的作用,因为抑制HMGR会降低甲羟戊酸途径下游所有产物的合成。使用表达人HMGR的转基因酵母或酵母HMGR同工酶,我们研究了辛伐他汀,阿托伐他汀,氟伐他汀和瑞舒伐他汀对细胞代谢的影响。结果他汀类药物减少了固醇含量,显着降低了固醇前体的含量,而仅适度降低了麦角固醇的水平。他汀类药物治疗可诱导编码固醇生物合成相关酶的基因的表达,而非固醇类异戊二烯途径的基因,例如辅酶Q和多聚醇的生物合成或蛋白质异戊二烯化,则受到不同的影响。他汀类药物显着提高了人类HMGR蛋白的水平,并且仅轻微影响了非甾醇类异戊二烯生物合成中涉及的Rer2和Coq3蛋白的水平。结论他汀类药物会影响甾醇和非甾醇类异戊二烯生物合成分支的甾醇库,基因表达和酶蛋白水平,这种作用取决于所用他汀的种类。我们的模型系统是表征单个他汀类药物或筛选新颖他汀类药物的廉价便捷的工具,还有助于个性化选择最有效的HMGR抑制剂,从而产生最佳反应并最大程度地减少严重的副作用。

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