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逆转录病毒α拮抗作用促进同型半胱氨酸代谢和氨清除。

Reverse Erythroblastosis Virus α Antagonism Promotes Homocysteine Catabolism and Ammonia Clearance.

机构信息

Research Center for Biopharmaceutics and Pharmacokinetics, College of Pharmacy, Jinan University, Guangzhou, China.

Integrated Chinese and Western Medicine Postdoctoral Research Station, Jinan University, Guangzhou, China.

出版信息

Hepatology. 2019 Nov;70(5):1770-1784. doi: 10.1002/hep.30675. Epub 2019 May 30.

Abstract

Metabolic homeostasis of amino acids is essential for human health. Here, we aimed to investigate a potential role for the clock component reverse erythroblastosis virus α (Rev-erbα) in circadian regulation of amino acid metabolism. RNA-seq with Rev-erbα mice showed expression changes in genes involved in amino acid metabolism, particularly, the urea cycle and methionine metabolism. Rev-erbα ablation increased hepatic mRNA, protein, and enzymatic activity of betaine homocysteine methyltransferase (Bhmt), cystathionine β-synthase (Cbs), and cystathionine γ-lyase (Cth) and decreased the levels of plasma and liver homocysteine in mice. Cell-based assays confirmed negative regulation of these three genes by Rev-erbα. Combined luciferase reporter, mobility-shift, and chromatin immunoprecipitation assays identified Rev-erbα as a transcriptional repressor of Bhmt, Cbs, and Cth. Rev-erbα ablation or antagonism alleviated chemical-induced hyperhomocysteinemia in mice. This was accompanied by elevated expressions of Bhmt, Cbs, and Cth. Moreover, Rev-erbα ablation or antagonism promoted urea production and ammonia clearance. Of urea cycle-related genes, arginase 1 (Arg1), ornithine transcarbamylase (Otc), and carbamoyl-phosphate synthase 1 (Cps1) expressions were up-regulated in Rev-erbα mice. Negative regulation of these urea cycle genes by Rev-erbα was validated using cell-based experiments. Mechanistic studies revealed that Rev-erbα inhibited CCAAT-enhancer-binding protein α transactivation to repress the transcription of Arg1, Cps1, and Otc. Conclusion: Rev-erbα antagonism alleviates hyperhomocysteinemia and promotes ammonia clearance. Targeting Rev-erbα represents an approach for the management of homocysteine- and ammonia-related diseases.

摘要

氨基酸的代谢平衡对人类健康至关重要。在这里,我们旨在研究时钟成分反向红细胞生成病毒 α(Rev-erbα)在氨基酸代谢的昼夜节律调节中的潜在作用。Rev-erbα 小鼠的 RNA-seq 显示,参与氨基酸代谢的基因表达发生变化,特别是尿素循环和蛋氨酸代谢。Rev-erbα 缺失增加了肝脏 mRNA、蛋白质和甜菜碱同型半胱氨酸甲基转移酶(Bhmt)、胱硫醚 β-合酶(Cbs)和胱硫醚 γ-裂合酶(Cth)的酶活性,并降低了小鼠血浆和肝脏同型半胱氨酸水平。基于细胞的测定证实了这些三个基因被 Rev-erbα 的负调控。结合荧光素酶报告基因、迁移率变动和染色质免疫沉淀测定,确定 Rev-erbα 是 Bhmt、Cbs 和 Cth 的转录抑制剂。Rev-erbα 缺失或拮抗可减轻化学诱导的高同型半胱氨酸血症小鼠。这伴随着 Bhmt、Cbs 和 Cth 的表达升高。此外,Rev-erbα 缺失或拮抗促进了尿素的产生和氨的清除。在尿素循环相关基因中,Arg1、Otc 和 Cps1 的表达在 Rev-erbα 小鼠中上调。使用基于细胞的实验验证了 Rev-erbα 对这些尿素循环基因的负调控。机制研究表明,Rev-erbα 抑制 CCAAT 增强子结合蛋白 α 的反式激活,以抑制 Arg1、Cps1 和 Otc 的转录。结论:Rev-erbα 拮抗可减轻高同型半胱氨酸血症并促进氨清除。靶向 Rev-erbα 为同型半胱氨酸和氨相关疾病的治疗提供了一种方法。

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