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微小RNA和L型钙通道对血管平滑肌机械转导的调节

Regulation of vascular smooth muscle mechanotransduction by microRNAs and L-type calcium channels.

作者信息

Turczyńska Karolina M, Hellstrand Per, Swärd Karl, Albinsson Sebastian

机构信息

Department of Experimental Medical Science; Lund University; Lund, Sweden.

出版信息

Commun Integr Biol. 2013 Jan 1;6(1):e22278. doi: 10.4161/cib.22278.

Abstract

The phenotype of smooth muscle cells is regulated by multiple environmental factors including mechanical forces. Mechanical stretch of mouse portal veins ex vivo has been shown to promote contractile differentiation by activation of the Rho-pathway, an effect that is dependent on the influx of calcium via L-type calcium channels. MicroRNAs have recently been demonstrated to play a significant role in the control of smooth muscle phenotype and in a recent report we investigated their role in vascular mechanosensing. By smooth muscle specific deletion of Dicer, we found that microRNAs are essential for smooth muscle differentiation in response to stretch by regulating CamKIIδ and L-type calcium channel expression. Furthermore, we suggest that loss of L-type calcium channels in Dicer KO is due to reduced expression of the smooth muscle-enriched microRNA, miR-145, which targets CamKIIδ. These results unveil a novel mechanism for miR-145 dependent regulation of smooth muscle phenotype.

摘要

平滑肌细胞的表型受包括机械力在内的多种环境因素调控。体外对小鼠门静脉进行机械拉伸已显示可通过激活Rho信号通路促进收缩性分化,这一效应依赖于经由L型钙通道的钙内流。最近有研究表明,微小RNA在平滑肌表型的调控中发挥重要作用,在最近的一份报告中,我们研究了它们在血管机械传感中的作用。通过平滑肌特异性敲除Dicer,我们发现微小RNA通过调节CamKIIδ和L型钙通道的表达,对于拉伸刺激下的平滑肌分化至关重要。此外,我们认为Dicer基因敲除小鼠中L型钙通道的缺失是由于平滑肌富集的微小RNA miR-145表达降低所致,miR-145以CamKIIδ为靶点。这些结果揭示了一种新的miR-145依赖的平滑肌表型调控机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/adea/3689564/d8bc77ba6e9f/cib-6-e22278-g1.jpg

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