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miR-133/Dio3 轴在 T3 依赖性调节心脏线粒体 ATP 表达中的作用。

Role of miR-133/Dio3 Axis in the T3-Dependent Modulation of Cardiac mitoK-ATP Expression.

机构信息

CNR Institute of Clinical Physiology, Via G. Moruzzi1, 56124 Pisa, Italy.

出版信息

Int J Mol Sci. 2022 Jun 11;23(12):6549. doi: 10.3390/ijms23126549.

Abstract

The opening of the ATP-sensitive mitochondrial potassium channel (mitok-ATP) is a common goal of cardioprotective strategies in the setting of acute and chronic myocardial disease. The biologically active thyroid hormone (TH), 3-5-3-triiodothyronine (T3), has been indicated as a potential activator of mitoK-ATP but the underlying mechanisms are still elusive. Here we describe a novel role of T3 in the transcriptional regulation of mitoK and mitoSur, the recently identified molecular constituents of the channel. To mimic human ischemic heart damage, we used a rat model of a low T3 state as the outcome of a myocardial ischemia/reperfusion event, and neonatal rat cardiomyocytes (NRCM) challenged with hypoxia or HO. Either in the in vivo or in vitro models, T3 administration to recover the physiological concentrations was able to restore the expression level of both the channel subunits, which were found to be downregulated under the stress conditions. Furthermore, the T3-mediated transcriptional activation of mitoK-ATP in the myocardium and NRCM was associated with the repression of the TH-inactivating enzyme, deiodinase 3 (Dio3), and an up-regulation of the T3-responsive miR-133a-3p. Mechanistically, the loss and gain of function experiments and reporter gene assays performed in NRCM, have revealed a new regulatory axis whereby the silencing of Dio3 under the control of miR-133a-3p drives the T3-dependent modulation of cardiac mitoK and mitoSur transcription.

摘要

三碘甲状腺原氨酸(T3)是一种生物活性甲状腺激素,已被证明是一种潜在的线粒体钾通道(mitok-ATP)激活剂,但潜在的机制仍不清楚。本文描述了 T3 在转录调节 mitoK 和 mitoSur 中的新作用,mitoK 和 mitoSur 是最近发现的通道分子成分。为了模拟人类缺血性心脏病损伤,我们使用了一种低 T3 状态的大鼠模型,作为心肌缺血/再灌注事件的结果,并用缺氧或 HO 处理新生大鼠心肌细胞(NRCM)。在体内或体外模型中,用 T3 恢复生理浓度能够恢复两种通道亚基的表达水平,在应激条件下发现它们的表达水平下调。此外,T3 介导的心肌和 NRCM 中 mitok-ATP 的转录激活与 TH 失活酶脱碘酶 3(Dio3)的抑制以及 T3 反应性 miR-133a-3p 的上调有关。在机制上,在 NRCM 中进行的失活和获得功能实验以及报告基因检测表明了一条新的调节轴,miR-133a-3p 控制下的 Dio3 沉默驱动 T3 依赖的心脏 mitoK 和 mitoSur 转录的调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/87e4/9223604/41cc38ebe09e/ijms-23-06549-g001.jpg

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