首页> 外文期刊>American Journal of Physiology >Regulation of SM22 alpha expression by arginine vasopressin and PDGF-BB in vascular smooth muscle cells.
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Regulation of SM22 alpha expression by arginine vasopressin and PDGF-BB in vascular smooth muscle cells.

机译:精氨酸加压素和PDGF-BB在血管平滑肌细胞中对SM22α表达的调节。

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摘要

Vascular smooth muscle (SM) cells (VSMC) undergo phenotypic modulation in vivo and in vitro. This process involves coordinated changes in expression of multiple SM-specific genes. In cultured VSMC, arginine vasopressin (AVP) increases and PDGF decreases expression of SM alpha-actin (SMA), the earliest marker of SM cells (SMC). However, it is unknown whether these agents regulate other SM genes in a similar fashion. SM22 alpha appears secondary to SMA during development and is also a marker for SMC. This study examined the regulation of SM22 alpha expression by AVP and PDGF in cultured VSMC. Levels of SM22 alpha mRNA and protein were increased by AVP and suppressed by PDGF. Consistent with these changes, AVP increased SM22 alpha promoter activity, whereas PDGF inhibited basal promoter activity and blocked AVP-induced increase. Activation of both JNK and p38 MAPK pathways was necessary for AVP-mediated induction of SM22 alpha promoter. Expression of constitutively active Ras produced similar suppressionson SM22 alpha promoter activity as PDGF. Signaling relayed from PDGF/Ras activation involved Raf, or a protein that competes for this site, Ral-GDS, and phosphatidylinositol 3-kinase activation. Truncational analysis showed that the proximal location of three CArG boxes in the promoter was sufficient for AVP stimulation. Mutations in this CArG box reduced basal and AVP-stimulated promoter activity without effecting PDGF suppression. Overexpression of serum response factor enhanced basal and AVP-stimulated promoter activity but had no effect on PDGF-BB-induced suppression. These data indicate that AVP and PDGF initiate specific signaling pathways that control expression of multiple SM genes leading to phenotypic modulation.
机译:血管平滑肌(SM)细胞(VSMC)在体内和体外进行表型调节。该过程涉及多个SM特异性基因表达的协调变化。在培养的VSMC中,精氨酸加压素(AVP)增加,而PDGF减少SMα-肌动蛋白(SMA)的表达,SMα-肌动蛋白是SM细胞(SMC)的最早标记。但是,尚不清楚这些药物是否以类似方式调节其他SM基因。 SM22 alpha在发育过程中仅次于SMA,并且还是SMC的标志物。这项研究检查了AVP和PDGF对培养的VSMC中SM22α表达的调节。 AVP增加SM22αmRNA和蛋白质的水平,PDGF抑制SM22αmRNA和蛋白质的水平。与这些变化一致,AVP增加SM22α启动子活性,而PDGF抑制基础启动子活性并阻止AVP诱导的增加。 JNK和p38 MAPK途径的激活对于AVP介导的SM22α启动子的诱导是必需的。组成性活性Ras的表达在SM22α启动子活性方面与PDGF产生相似的抑制作用。由PDGF / Ras激活传递的信号涉及Raf或竞争该位点的蛋白质,Ral-GDS和磷脂酰肌醇3激酶激活。截断分析表明,启动子中三个CArG盒的近端位置足以刺激AVP。此CArG盒中的突变降低了基础和AVP刺激的启动子活性,而不影响PDGF抑制。血清反应因子的过表达增强了基础和AVP刺激的启动子活性,但对PDGF-BB诱导的抑制作用没有影响。这些数据表明AVP和PDGF启动了特定的信号传导途径,该途径控制着多个SM基因的表达,从而导致表型调节。

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