首页> 美国卫生研究院文献>The Journal of Biological Chemistry >MicroRNA MiR-199a-5p Regulates Smooth Muscle Cell Proliferation and Morphology by Targeting WNT2 Signaling Pathway
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MicroRNA MiR-199a-5p Regulates Smooth Muscle Cell Proliferation and Morphology by Targeting WNT2 Signaling Pathway

机译:MicroRNA MiR-199a-5p通过靶向WNT2信号通路调节平滑肌细胞的增殖和形态

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摘要

MicroRNA miR-199a-5p impairs tight junction formation, leading to increased urothelial permeability in bladder pain syndrome. Now, using transcriptome analysis in urothelial TEU-2 cells, we implicate it in the regulation of cell cycle, cytoskeleton remodeling, TGF, and WNT signaling pathways. MiR-199a-5p is highly expressed in the smooth muscle layer of the bladder, and we altered its levels in bladder smooth muscle cells (SMCs) to validate the pathway analysis. Inhibition of miR-199a-5p with antimiR increased SMC proliferation, reduced cell size, and up-regulated miR-199a-5p targets, including WNT2. Overexpression of WNT2 protein or treating SMCs with recombinant WNT2 closely mimicked the miR-199a-5p inhibition, whereas down-regulation of WNT2 in antimiR-expressing SMCs with shRNA restored cell phenotype and proliferation rates. Overexpression of miR-199a-5p in the bladder SMCs significantly increased cell size and up-regulated SM22, SM α-actin, and SM myosin heavy chain mRNA and protein levels. These changes as well as increased expression of ACTG2, TGFB1I1, and CDKN1A were mediated by up-regulation of the smooth muscle-specific transcriptional activator myocardin at mRNA and protein levels. Myocardin-related transcription factor A downstream targets Id3 and MYL9 were also induced. Up-regulation of myocardin was accompanied by down-regulation of WNT-dependent inhibitory Krüppel-like transcription factor 4 in miR-199a-5p-overexpressing cells. In contrast, Krüppel-like transcription factor 4 was induced in antimiR-expressing cells following the activation of WNT2 signaling, leading to repression of myocardin-dependent genes. MiR-199a-5p plays a critical role in the WNT2-mediated regulation of proliferative and differentiation processes in the smooth muscle and may behave as a key modulator of smooth muscle hypertrophy, which is relevant for organ remodeling.
机译:MicroRNA miR-199a-5p损害紧密连接形成,导致膀胱疼痛综合征的尿路上皮通透性增加。现在,在尿路上皮TEU-2细胞中使用转录组分析,我们将其暗示为细胞周期,细胞骨架重塑,TGF和WNT信号通路的调节。 MiR-199a-5p在膀胱平滑肌层中高度表达,我们改变了其在膀胱平滑肌细胞(SMCs)中的水平以验证通路分析。用抗miR抑制miR-199a-5p可增加SMC增殖,减少细胞大小并上调miR-199a-5p靶标(包括WNT2)。 WNT2蛋白的过表达或用重组WNT2处理的SMC紧密模仿了miR-199a-5p的抑制作用,而在具有shRNA的抗miR表达的SMC中WNT2的下调恢复了细胞表型和增殖速率。 miR-199a-5p在膀胱SMC中的过表达显着增加了细胞大小,并上调了SM22,SMα-肌动蛋白和SM肌球蛋白重链mRNA和蛋白质水平。这些变化以及ACTG2,TGFB1I1和CDKN1A的表达增加是由mRNA和蛋白质水平上的平滑肌特异性转录激活因子心肌素上调介导的。心肌相关转录因子A下游目标Id3和MYL9也被诱导。在过度表达miR-199a-5p的细胞中,心肌素的上调伴随WNT依赖性抑制性Krüppel样转录因子4的下调。相反,在激活WNT2信号后,在表达抗miR的细胞中诱导了Krüppel样转录因子4,导致心肌依赖性基因的抑制。 MiR-199a-5p在WNT2介导的平滑肌增生和分化过程调节中起关键作用,并可能充当平滑肌肥大的关键调节剂,这与器官重塑有关。

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