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首页> 外文期刊>The Journal of biological chemistry >MicroRNAs Are Essential for Stretch-induced Vascular Smooth Muscle Contractile Differentiation via MicroRNA (miR)-145-dependent Expression of L-type Calcium Channels
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MicroRNAs Are Essential for Stretch-induced Vascular Smooth Muscle Contractile Differentiation via MicroRNA (miR)-145-dependent Expression of L-type Calcium Channels

机译:Micrornas对于Ligherna(miR)-145依赖性表达L型钙通道的拉伸诱导的血管平滑肌收缩分化是必不可少的

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Stretch of the vascular wall is an important stimulus to maintain smooth muscle contractile differentiation that is known to depend on L-type calcium influx, Rho-activation, and actin polymerization. The role of microRNAs in this response was investigated using tamoxifen-inducible and smooth muscle-specific Dicer KO mice. In the absence of Dicer, which is required for microRNA maturation, smooth muscle microRNAs were completely ablated. Stretch-induced contractile differentiation and Rho-dependent cofilin-2 phosphorylation were dramatically reduced in Dicer KO vessels. On the other hand, acute stretch-sensitive growth signaling, which is independent of influx through L-type calcium channels, was not affected by Dicer KO. Contractile differentiation induced by the actin polymerizing agent jasplakinolide was not altered by deletion of Dicer, suggesting an effect upstream of actin polymerization. Basal and stretch-induced L-type calcium channel expressions were both decreased in Dicer KO portal veins, and inhibition of L-type channels in control vessels mimicked the effects of Dicer deletion. Furthermore, inhibition of miR-145, a highly expressed microRNA in smooth muscle, resulted in a similar reduction of L-type calcium channel expression. This was abolished by the Ca2+/calmodulin-dependent protein kinase II inhibitor KN93, suggesting that Ca2+/calmodulin-dependent protein kinase IIδ, a target of miR-145 and up-regulated in Dicer KO, plays a role in the regulation of L-type channel expression. These results show that microRNAs play a crucial role in stretch-induced contractile differentiation in the vascular wall in part via miR-145-dependent regulation of L-type calcium channels.
机译:血管壁的延伸是保持平滑肌收缩分化的重要刺激,该分化已知取决于L型钙流入,RHO活化和肌动蛋白聚合。使用Tamoxifen-Invucible和平滑的肌肉特异性Dicer KO小鼠研究MicroRNA在这种反应中的作用。在没有Dicer的情况下,对于MicroRNA成熟所需的,平滑肌微小RORNA完全被烧蚀。在Dicer KO血管中,拉伸诱导的收缩分化和Rho依赖性辛苷-2磷酸化。另一方面,急性拉伸敏感的生长信号传导与L型钙通道无关,不受Dicer Ko的影响。肌动蛋白聚合剂jasplakinolide诱导的收缩分化未通过缺失改性而改变,表明肌动蛋白聚合的上游效果。基础和拉伸诱导的L型钙通道表达在Dicer KO门静脉中均降低,并抑制对照容器中的L型通道模仿Dicer缺失的影响。此外,抑制miR-145,在平滑肌中的高度表达的微小RORNA,导致L型钙通道表达的类似减少。这是由Ca2 + /钙调蛋白依赖性蛋白激酶II抑制剂KN93废除的,表明CA2 + /钙调蛋白依赖性蛋白激酶IIδ,MIR-145的靶标在Dicer Ko中,在L-的调节中起作用类型通道表达式。这些结果表明,MicroRNA在血管壁中部分地通过L型钙通道的MIR-145依赖性调节在血管壁中的拉伸诱导的收缩分化中起着至关重要的作用。

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