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培养大鼠肝细胞中天然和失活细胞色素P450 3A的生理周转特征:胞质AAA型ATP酶p97的作用?

Characterization of the physiological turnover of native and inactivated cytochromes P450 3A in cultured rat hepatocytes: a role for the cytosolic AAA ATPase p97?

作者信息

Faouzi Saadia, Medzihradszky Katalin F, Hefner Colleen, Maher Jacquelyn J, Correia Maria Almira

机构信息

Department of Cellular & Molecular Pharmacology, University of California, San Francisco, California 94158-2280, USA.

出版信息

Biochemistry. 2007 Jul 3;46(26):7793-803. doi: 10.1021/bi700340n. Epub 2007 Jun 6.

Abstract

Mammalian hepatic cytochromes P450 (P450s) are endoplasmic reticulum (ER)-anchored hemoproteins engaged in the metabolism of numerous xeno- and endobiotics. P450s exhibit widely ranging half-lives, utilizing both autophagic-lysosomal (ALD) and ubiquitin-dependent 26S proteasomal (UPD) degradation pathways. Although suicidally inactivated hepatic CYPs 3A and "native" CYP3A4 in Saccharomyces cerevisiae are degraded via UPD, the turnover of native hepatic CYPs 3A in their physiological milieu has not been elucidated. Herein, we characterize the degradation of native, dexamethasone-inducible CYPs 3A in cultured primary rat hepatocytes, using proteasomal (MG-132 and MG-262) and ALD [NH4Cl and 3-methyladenine (3-MA)] inhibitors to examine their specific degradation route. Pulse-chase with immunoprecipitation analyses revealed a basal 52% 35S-CYP3A loss over 6 h, which was stabilized by both proteasomal inhibitors. By contrast, no corresponding CYP3A stabilization was detected with either ALD inhibitor NH4Cl or 3-MA. Furthermore, MG-262-induced CYP3A stabilization was associated with its polyubiquitylation, thereby verifying that native CYPs 3A were also degraded via UPD. To identify the specific participants in this process, cellular proteins were cross-linked in situ with paraformaldehyde (PFA) in cultured hepatocytes. Immunoblotting analyses of CYP3A immunoprecipitates after PFA-cross-linking revealed the presence of p97, a cytosolic AAA ATPase instrumental in the extraction and delivery of ubiquitylated ER proteins for proteasomal degradation. Such native CYP3A-p97 interactions were greatly magnified after CYP3A suicidal inactivation (which accelerates UPD), and/or proteasomal inhibition, and were confirmed by proteomic and confocal immunofluorescence microscopic analyses. These findings clearly reveal that native CYPs 3A undergo UPD and implicate a role for p97 in this process.

摘要

哺乳动物肝细胞色素P450(P450s)是内质网(ER)锚定的血红素蛋白,参与多种外源和内源性生物活性物质的代谢。P450s的半衰期差异很大,可利用自噬溶酶体(ALD)和泛素依赖性26S蛋白酶体(UPD)降解途径。尽管酿酒酵母中自杀性失活的肝脏CYP 3A和“天然”CYP3A4通过UPD降解,但天然肝脏CYP 3A在其生理环境中的周转情况尚未阐明。在此,我们利用蛋白酶体(MG - 132和MG - 262)和ALD[氯化铵和3 - 甲基腺嘌呤(3 - MA)]抑制剂来研究天然的、地塞米松诱导的CYP 3A在原代大鼠肝细胞培养物中的降解情况,以确定其具体的降解途径。脉冲追踪免疫沉淀分析显示,在6小时内,基础状态下35S - CYP3A损失52%,蛋白酶体抑制剂可使其稳定。相比之下,ALD抑制剂氯化铵或3 - MA均未检测到相应的CYP3A稳定化。此外,MG - 262诱导的CYP3A稳定化与其多聚泛素化相关,从而证实天然CYP 3A也通过UPD降解。为了确定这一过程中的特定参与者,在培养的肝细胞中用多聚甲醛(PFA)对细胞蛋白进行原位交联。PFA交联后对CYP3A免疫沉淀物进行免疫印迹分析,结果显示存在p97,这是一种胞质AAA型ATP酶,在提取和递送泛素化的内质网蛋白以供蛋白酶体降解方面发挥作用。在CYP3A自杀性失活(加速UPD)和/或蛋白酶体抑制后,这种天然CYP3A - p97相互作用显著增强,并通过蛋白质组学和共聚焦免疫荧光显微镜分析得到证实。这些发现清楚地表明天然CYP 3A经历UPD降解,并暗示p97在此过程中发挥作用。

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