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蛋白磷酸酶 2A 通过去磷酸化 AHR 和 MDR1 来调节细胞毒性和耐药性。

Protein phosphatase 2A regulates cytotoxicity and drug resistance by dephosphorylating AHR and MDR1.

机构信息

Guangdong Provincial Key Laboratory of Food, Nutrition and Health, Department of Toxicology, School of Public Health, Sun Yat-sen University, Guangzhou, China.

Department of Toxicology, Guangzhou Center for Disease Control and Prevention, Guangzhou, China.

出版信息

J Biol Chem. 2022 May;298(5):101918. doi: 10.1016/j.jbc.2022.101918. Epub 2022 Apr 8.

Abstract

Protein phosphatase 2A (PP2A) is a serine/threonine dephosphorylating enzyme complex that plays numerous roles in biological processes, including cell growth and metabolism. However, its specific actions in many of these critical pathways are unclear. To explore mechanisms underlying metabolic enzyme regulation in the liver, we investigated the key pathways involved in regulation of xenobiotic-metabolizing enzymes in a mouse model with hepatocyte-specific deletion of Ppp2r1a, encoding the Aα subunit of PP2A. We performed transcriptome and phosphoproteome analysis in mouse livers at the age of 3 months and identified 2695 differentially expressed genes and 549 upregulated phosphoproteins in homozygous knockout mouse livers compared with WT littermates. In particular, the expression of metabolic enzymes Cyp2e1, Cyp1a1, Cyp1a2, Mdr1a, and Abcg2 was dramatically altered in homozygous knockout mouse livers. We also demonstrated that activation of PP2A reversed the decline of metabolic enzyme expression in primary mouse hepatocytes. We found that specific PP2A holoenzymes were involved in metabolic enzyme induction through dephosphorylation of transcription factors, nuclear receptors, or the target enzymes themselves, leading to dysregulation of xenobiotic metabolism or drug-induced hepatotoxicity. Notably, we confirmed that a regulatory axis, PP2A B56α-aryl hydrocarbon receptor-Cyp1a1, was involved in benzo(a)pyrene-induced cytotoxicity through dephosphorylation of the metabolic nuclear receptor, aryl hydrocarbon receptor, at serine 36. In addition, we showed that PP2A B56δ complexes directly dephosphorylated the multidrug efflux pump MDR1 (encoded by multi-drug resistance gene 1), contributing to drug resistance against the chemotherapeutic 5-fluorouracil. Taken together, these novel findings demonstrate the involvement of PP2A in the regulation of liver metabolism.

摘要

蛋白磷酸酶 2A(PP2A)是一种丝氨酸/苏氨酸去磷酸化酶复合物,在细胞生长和代谢等许多生物过程中发挥着重要作用。然而,其在许多关键途径中的具体作用尚不清楚。为了探索肝脏代谢酶调节的机制,我们在肝细胞特异性敲除编码 PP2A Aα亚基的 Ppp2r1a 的小鼠模型中研究了参与外源代谢酶调节的关键途径。我们对 3 月龄小鼠肝脏进行了转录组和磷酸化组分析,发现与 WT 同窝仔相比,纯合敲除鼠肝脏中有 2695 个差异表达基因和 549 个上调的磷酸化蛋白。特别是,代谢酶 Cyp2e1、Cyp1a1、Cyp1a2、Mdr1a 和 Abcg2 的表达在纯合敲除鼠肝脏中显著改变。我们还证明,PP2A 的激活可逆转原代小鼠肝细胞中代谢酶表达的下降。我们发现,特定的 PP2A 全酶通过去磷酸化转录因子、核受体或靶酶本身来参与代谢酶的诱导,导致外源物代谢或药物诱导的肝毒性失调。值得注意的是,我们通过去磷酸化代谢核受体芳烃受体(aryl hydrocarbon receptor,AHR)丝氨酸 36 位证实了一个调节轴,即 PP2A B56α-芳烃受体-Cyp1a1,参与了苯并(a)芘诱导的细胞毒性作用。此外,我们还表明,PP2A B56δ 复合物可直接去磷酸化多药耐药基因 1(multi-drug resistance gene 1,MDR1)编码的多药外排泵 MDR1,有助于对抗化疗药物 5-氟尿嘧啶的耐药性。综上所述,这些新发现表明 PP2A 参与了肝脏代谢的调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c49/9118923/e9b92d56d024/gr1.jpg

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