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转录因子 FoxO1 是慢性肾脏病肌肉减少症的主要介质,受 microRNA-486 抑制。

Transcription factor FoxO1, the dominant mediator of muscle wasting in chronic kidney disease, is inhibited by microRNA-486.

机构信息

Renal Section, Changhai Hospital, Shanghai, China.

出版信息

Kidney Int. 2012 Aug;82(4):401-11. doi: 10.1038/ki.2012.84.

Abstract

Chronic kidney disease (CKD) accelerates muscle protein degradation by stimulating the ubiquitin proteasome system through activation of the E3 ligases, Atrogin-1/MAFbx and MuRF-1. Forkhead transcription factors (FoxOs) can control the expression of these E3 ligases, but the contribution of individual FoxOs to muscle wasting is unclear. To study this we created mice with a muscle-specific FoxO1 deletion. The absence of FoxO1 blocked 70% of the increase in E3 ligase induction by CKD as well as the proteolysis and loss of muscle mass. Thus, FoxO1 has a role in controlling ubiquitin proteasome system-related proteolysis. As microRNA (miR)-486 reportedly dampens FoxO1 expression and its activity,we transfected a miR-486 mimic into primary cultures of myotubes and found this blocked dexamethasone-stimulated protein degradation without influencing protein synthesis.It also decreased FoxO1 protein translation and increased FoxO1 phosphorylation by downregulation of PTEN phosphatase, a negative regulator of p-Akt. To test its efficacy in vivo, we electroporated miR-486 into muscles and found that the expression of the E3 ligases was suppressed and muscle mass increased despite CKD. Thus, FoxO1 is a dominant mediator of CKD-induced muscle wasting, and miR-486 coordinately decreases FoxO1 and PTEN to protect against this catabolic response.

摘要

慢性肾脏病(CKD)通过激活 E3 连接酶(Atrogin-1/MAFbx 和 MuRF-1)刺激泛素蛋白酶体系统,加速肌肉蛋白降解。叉头转录因子(FoxOs)可以控制这些 E3 连接酶的表达,但单个 FoxOs 对肌肉减少症的贡献尚不清楚。为了研究这一点,我们创建了肌肉特异性 FoxO1 缺失的小鼠。FoxO1 的缺失阻止了 CKD 引起的 E3 连接酶诱导增加的 70%,以及蛋白酶解和肌肉质量的损失。因此,FoxO1 在控制泛素蛋白酶体系统相关蛋白酶解中起作用。据报道,microRNA(miR)-486 可抑制 FoxO1 的表达及其活性,我们将 miR-486 模拟物转染到肌管的原代培养物中,发现这抑制了地塞米松刺激的蛋白降解,而不影响蛋白合成。它还通过下调 PTEN 磷酸酶来减少 FoxO1 蛋白翻译和增加 FoxO1 磷酸化,PTEN 是 p-Akt 的负调节剂。为了在体内测试其功效,我们用电穿孔将 miR-486 转染到肌肉中,发现尽管存在 CKD,E3 连接酶的表达仍受到抑制,肌肉质量增加。因此,FoxO1 是 CKD 诱导的肌肉减少症的主要介导物,miR-486 共同降低 FoxO1 和 PTEN 以防止这种分解代谢反应。

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