首页> 外文期刊>Molecular pharmacology. >Vacuolar degradation of rat liver CYP2B1 in Saccharomyces cerevisiae: further validation of the yeast model and structural implications for the degradation of mammalian endoplasmic reticulum P450 proteins.
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Vacuolar degradation of rat liver CYP2B1 in Saccharomyces cerevisiae: further validation of the yeast model and structural implications for the degradation of mammalian endoplasmic reticulum P450 proteins.

机译:酿酒酵母中大鼠肝脏CYP2B1的液泡降解:酵母模型的进一步验证和哺乳动物内质网P450蛋白降解的结构意义。

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摘要

Mammalian hepatic cytochromes P450 (P450s) are endoplasmic reticulum (ER)-anchored hemoproteins with highly variable half-lives. CYP3A4, the dominant human liver drug-metabolizing enzyme, and its rat liver orthologs undergo ubiquitin (Ub)-dependent 26S proteasomal degradation after suicide inactivation or after heterologous expression in Saccharomyces cerevisiae. In contrast, rat liver CYP2C11 is degraded by the vacuolar "lysosomal" pathway when similarly expressed in yeast. The structural determinants that commit P450s to proteasomal or lysosomal degradation are unknown. To further validate S. cerevisiae as a model for exploring mammalian P450 turnover, the degradation of phenobarbital-inducible liver CYP2B1, an enzyme reportedly degraded via the rat hepatic autophagic-lysosomal pathway, was examined in a yeast strain (pep4delta) deficient in vacuolar degradation and its isogenic wild-type control (PEP4). Although CYP2B1 was equivalently expressed in both strains during early logarithmic growth, its degradation was retarded in pep4delta strain, remaining at a level 5-fold higher than that in PEP4 yeast when monitored at the stationary phase. No comparable CYP2B1 stabilization was detected in yeast genetically deficient in the ER Ub-conjugating enzyme Ubc6p or Ubc7p or defective in 19S proteasomal subunit Hrd2p. Thus, as in the rat liver, CYP2B1 is a target of vacuolar/lysosomal rather than proteasomal degradation in yeast, thereby further validating this model for mammalian P450 turnover. It is intriguing that a chimeric protein, CYP2B1-3A4CT, with the CYP3A4 C-terminal heptapeptide grafted onto the CYP2B1 C terminus, was proteasomally degraded after similar expression. Such diversion of CYP2B1 from its predominantly vacuolar degradation suggests that the CYP3A4 heptapeptide could either actively signal its proteasomal degradation or block its vacuolar proteolysis.
机译:哺乳动物肝细胞色素P450(P450s)是内质网(ER)锚定的血红蛋白,半衰期变化很大。 CYP3A4,主要的人肝药物代谢酶,及其大鼠肝直向同源物在自杀灭活后或在酿酒酵母中异源表达后,受到泛素(Ub)依赖性26S蛋白酶体降解。相反,当在酵母中类似表达时,大鼠肝CYP2C11被液泡的“溶酶体”途径降解。导致P450降解蛋白酶体或溶酶体的结构决定因素尚不清楚。为了进一步验证酿酒酵母是否为探索哺乳动物P450转换的模型,在缺乏液泡降解的酵母菌株(pep4delta)中检查了苯巴比妥诱导的肝脏CYP2B1的降解,该酶据报道是通过大鼠肝自噬溶酶体途径降解的。及其同基因野生型对照(PEP4)。尽管CYP2B1在早期对数生长期均在两种菌株中均等表达,但在pep4delta菌株中CYP2B1的降解受到抑制,在固定相监测时,其降解水平比PEP4酵母高5倍。在ER Ub缀合酶Ubc6p或Ubc7p遗传缺陷或19S蛋白酶体亚基Hrd2p缺陷的酵母中未检测到可比的CYP2B1稳定化作用。因此,如同在大鼠肝脏中一样,CYP2B1是酵母中液泡/溶酶体而不是蛋白酶体降解的靶标,从而进一步验证了该模型的哺乳动物P450周转率。令人感兴趣的是,在类似表达后,具有CYP3A4 C端七肽接枝到CYP2B1 C末端的嵌合蛋白CYP2B1-3A4CT被蛋白酶降解了。 CYP2B1从主要是液泡降解的这种转移表明,CYP3A4七肽可以主动表示其蛋白酶体降解或阻断其液泡蛋白水解。

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