首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Distinct Effects of Voltage- and Store-dependent Calcium Influx on Stretch-induced Differentiation and Growth in Vascular Smooth Muscle
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Distinct Effects of Voltage- and Store-dependent Calcium Influx on Stretch-induced Differentiation and Growth in Vascular Smooth Muscle

机译:电压依赖性和钙依赖性钙内流对拉伸诱导的血管平滑肌分化和生长的影响

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摘要

Stretch of the vascular wall stimulates smooth muscle hypertrophy by activating the MAPK and Rho/Rho kinase (ROK) pathways. We investigated the role of calcium in this response. Stretch-stimulated expression of contractile and cytoskeletal proteins in mouse portal vein was inhibited at mRNA and protein levels by blockade of voltage-dependent Ca2+ entry (VDCE). In contrast, blockade of store-operated Ca2+ entry (SOCE) did not affect smooth muscle marker expression but decreased global protein synthesis. Activation of VDCE caused membrane translocation of RhoA followed by phosphorylation of its downstream effectors LIMK-2 and cofilin-2. Stretch-activated cofilin-2 phosphorylation depended on VDCE but not on SOCE. VDCE was associated with increased mRNA expression of myocardin, myocyte enhancer factor (MEF) -2A and -2D, and smooth muscle marker genes, all of which depended on ROK activity. SOCE increased ERK1/2 phosphorylation and c-Fos expression but had no effect on phosphorylation of LIMK-2 and cofilin-2 or on myocardin and MEF2 expression. Knockdown of MEF2A or -2D eliminated the VDCE-induced activation of myocardin expression and increased basal c-Jun and c-Fos mRNA levels. These results indicate that MEF2 mediates VDCE-dependent stimulation of myocardin expression via the Rho/ROK pathway. In addition, SOCE activates the expression of immediate-early genes, known to be regulated by MEF2 via Ca2+-dependent phosphorylation of histone deacetylases, but this mode of Ca2+ entry does not affect the Rho/ROK pathway. Compartmentation of Ca2+ entry pathways appears as one mechanism whereby extracellular and membrane signals influence smooth muscle phenotype regulation, with MEF2 as a focal point.
机译:血管壁的伸展通过激活MAPK和Rho / Rho激酶(ROK)途径刺激平滑肌肥大。我们调查了钙在这种反应中的作用。通过阻断电压依赖性Ca 2 + 进入(VDCE),在小鼠门静脉的mRNA和蛋白水平上抑制了拉伸刺激的收缩和细胞骨架蛋白的表达。相反,存储操作的Ca 2 + 条目(SOCE)的封锁不会影响平滑肌标志物的表达,但会降低整体蛋白质的合成。 VDCE的激活引起RhoA的膜移位,随后其下游效应子LIMK-2和cofilin-2磷酸化。拉伸激活的cofilin-2磷酸化取决于VDCE,而不取决于SOCE。 VDCE与心肌蛋白,心肌细胞增强因子(MEF)-2A和-2D和平滑肌标志物基因的mRNA表达增加有关,所有这些均取决于ROK活性。 SOCE增加了ERK1 / 2磷酸化和c-Fos表达,但对LIMK-2和cofilin-2的磷酸化或对心肌素和MEF2的表达没有影响。击倒MEF2A或-2D消除了VDCE诱导的心肌表达激活,并增加了基础c-Jun和c-Fos mRNA水平。这些结果表明,MEF2通过Rho / ROK途径介导VDCE依赖性的心肌蛋白表达刺激。此外,SOCE通过组蛋白脱乙酰基酶的Ca 2 + 依赖性磷酸化激活了MEF2调控的即早基因的表达,但是这种Ca 2 + 进入不会影响Rho / ROK途径。 Ca 2 + 进入途径的分隔是一种机制,其中细胞外和膜信号影响平滑肌表型调节,以MEF2为焦点。

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