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Nuclear envelope proteins modulate proliferation of vascular smooth muscle cells during cyclic stretch application

机译:核膜蛋白调节循环拉伸过程中血管平滑肌细胞的增殖

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摘要

Cyclic stretch is an important inducer of vascular smooth muscle cell (VSMC) proliferation, which is crucial in vascular remodeling during hypertension. However, the molecular mechanism remains unclear. We studied the effects of emerin and lamin A/C, two important nuclear envelope proteins, on VSMC proliferation in hypertension and the underlying mechano-mechanisms. In common carotid artery of hypertensive rats in vivo and in cultured cells subjected to high (15%) cyclic stretch in vitro, VSMC proliferation was increased significantly, and the expression of emerin and lamin A/C was repressed compared with normotensive or normal (5%) cyclic stretch controls. Using targeted siRNA to mimic the repressed expression of emerin or lamin A/C induced by 15% stretch, we found that VSMC proliferation was enhanced under static and 5%-stretch conditions. Overexpression of emerin or lamin A/C reversed VSMC proliferation induced by 15% stretch. Hence, emerin and lamin A/C play critical roles in suppressing VSMC hyperproliferation induced by hyperstretch. ChIP-on-chip and MOTIF analyses showed that the DNAs binding with emerin contain three transcription factor motifs: CCNGGA, CCMGCC, and ABTTCCG; DNAs binding with lamin A/C contain the motifs CVGGAA, GCCGCYGC, and DAAGAAA. Protein/DNA array proved that altered emerin or lamin A/C expression modulated the activation of various transcription factors. Furthermore, accelerating local expression of emerin or lamin A/C reversed cell proliferation in the carotid artery of hypertensive rats in vivo. Our findings establish the pathogenetic role of emerin and lamin A/C repression in stretch-induced VSMC proliferation and suggest mechanobiological mechanism underlying this process that involves the sequence-specific binding of emerin and lamin A/C to specific transcription factor motifs.
机译:循环拉伸是血管平滑肌细胞(VSMC)增殖的重要诱因,这在高血压期间的血管重塑中至关重要。但是,分子机制仍不清楚。我们研究了Emerin和Lamin A / C这两种重要的核包膜蛋白对高血压VSMC增殖及潜在机制的影响。与正常血压或正常血压相比,在体内高压大鼠的颈总动脉和体外经历高(15%)周期性拉伸的培养细胞中,VSMC增殖显着增加,而Emerin和Lamin A / C的表达受到抑制(5)。 %)循环拉伸控制。使用靶向的siRNA模拟15%拉伸诱导的emerin或lamin A / C的抑制表达,我们发现VSMC增殖在静态和5%拉伸条件下得到增强。 Emerin或Lamin A / C的过表达逆转了15%拉伸诱导的VSMC增殖。因此,Emerin和层粘连蛋白A / C在抑制由过度伸展引起的VSMC过度增殖中起关键作用。芯片上芯片分析和MOTIF分析显示,与emerin结合的DNA包含三个转录因子基序:CCNGGA,CCMGCC和ABTTCCG。与核纤层蛋白A / C结合的DNA包含基序CVGGAA,GCCGCYGC和DAAGAAA。蛋白质/ DNA阵列证明,改变的Emerin或Lamin A / C表达可调节各种转录因子的激活。此外,在体内,加速Emerin或Lamin A / C的局部表达逆转了高血压大鼠颈动脉中的细胞增殖。我们的发现建立了在牵拉诱导的VSMC增殖中Emerin和Lamin A / C抑制的致病作用,并提出了该过程的机制,涉及Emerin和Lamin A / C与特定转录因子基序的序列特异性结合。

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