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首页> 外文期刊>Molecular pharmacology. >Native CYP2C11: heterologous expression in Saccharomyces cerevisiae reveals a role for vacuolar proteases rather than the proteasome system in the degradation of this endoplasmic reticulum protein.
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Native CYP2C11: heterologous expression in Saccharomyces cerevisiae reveals a role for vacuolar proteases rather than the proteasome system in the degradation of this endoplasmic reticulum protein.

机译:天然CYP2C11:在酿酒酵母中的异源表达揭示了液泡蛋白酶而不是蛋白酶体系统在该内质网蛋白降解中的作用。

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摘要

Cytochromes P450 (P450s) are hemoprotein enzymes committed to the metabolism of chemically diverse endo- and xenobiotics. They are anchored to the endoplasmic reticulum (ER) membrane with the bulk of their catalytic domain exposed to the cytosol, and thus they constitute excellent examples of integral monotopic ER proteins. Physiologically they are known to turn over asynchronously, but the determinants that trigger their proteolytic disposal and the pathways for such cellular disposal are not well defined. We recently showed that CYP3A4, the dominant human liver drug-metabolizing enzyme, and its rat liver orthologs undergo ubiquitin-dependent 26S proteasomal degradation not only after suicide inactivation, but also when CYP3A4 is expressed in Saccharomyces cerevisiae, presumably in its "native" form. The latter findings, obtained by the use of strains either with compromised proteasomal degradation of 3-hydroxy-3-methylglutaryl-CoA reductase (HMGR) or deficient in ubiquitin-conjugating enzymes (Ubc; UBC), revealed that this native monotopic P450 enzyme, in common with the polytopic HMGR, required the function of certain HRD (HMGR degradation) and UBC genes. In this study, we examined the degradation of CYP2C11, a male rat liver-specific P450, by heterologous expression in S. cerevisiae under comparable conditions. We report that unlike CYP3A4 and HMGR, the degradation of CYP2C11 in S. cerevisiae is independent of either HRD or UBC gene function, but it is largely dependent on vacuolar (lysosomal) proteolysis. These findings with two monotopic ER hemoproteins, CYP2C11 and CYP3A4, and the polytopic ER protein HMGR attest to the remarkable mechanistic diversity of cellular proteolytic disposal of ER proteins.
机译:细胞色素P450(P450s)是致力于化学上多样化的内源性和异源性生物素代谢的血红素酶。它们锚定到内质网(ER)膜,其催化结构域的大部分暴露于胞质溶胶,因此它们构成了完整的单位ER蛋白的极好例子。从生理学上讲,它们是异步翻转的,但是触发其蛋白水解处理的决定因素以及此类细胞处理的途径尚不明确。我们最近表明,CYP3A4,主要的人类肝脏药物代谢酶,及其大鼠肝脏直系同源物不仅在自杀灭活后而且在酿酒酵母中以CYP3A4的形式(大概是其“天然”形式)经历遍在蛋白依赖性的26S蛋白酶体降解。 。后一种发现是通过使用蛋白酶体降解3-羟基-3-甲基戊二酰辅酶A还原酶(HMGR)受损或缺乏泛素结合酶(Ubc; UBC)的菌株而获得的,该发现表明,这种天然的单位P450酶与多位HMGR相同,它需要某些HRD(HMGR降解)和UBC基因的功能。在这项研究中,我们研究了CYP2C11,一种雄性大鼠肝特异性P450的降解,该降解是通过在可比条件下在酿酒酵母中进行异源表达来实现的。我们报告,与CYP3A4和HMGR不同,酿酒酵母中CYP2C11的降解与HRD或UBC基因功能无关,但主要取决于液泡(溶酶体)蛋白水解。这些发现与两种单位ER血红蛋白CYP2C11和CYP3A4以及多位ER蛋白质HMGR一起证明了细胞蛋白水解处理ER蛋白质的显着机制多样性。

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