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Procontractile G protein–mediated signaling pathways antagonistically regulate smooth muscle differentiation in vascular remodeling

机译:收缩性G蛋白介导的信号通路拮抗血管重构中平滑肌的分化

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Vascular smooth muscle (Sm) cells (VSMCs) are highly plastic. Their differentiation state can be regulated by serum response factor (SRF), which activates genes involved in Sm differentiation and proliferation by recruiting cofactors, such as members of the myocardin family and ternary complex factors (TCFs), respectively. However, the extracellular cues and upstream signaling mechanisms regulating SRF-dependent VSMC differentiation under in vivo conditions are poorly understood. In this study, we show that the procontractile signaling pathways mediated by the G proteins G12/G13 and Gq/G11 antagonistically regulate VSMC plasticity in different models of vascular remodeling. In mice lacking Gα12/Gα13 or their effector, the RhoGEF protein LARG, RhoA-dependent SRF-regulation was blocked and down-regulation of VSMC differentiation marker genes was enhanced. This was accompanied by an excessive vascular remodeling and exacerbation of atherosclerosis. In contrast, Sm-specific Gαq/Gα11 deficiency blocked activation of extracellular signal-regulated kinase 1/2 and the TCF Elk-1, resulting in a reduced VSMC dedifferentiation in response to flow cessation or vascular injury. These data show that the balanced activity of both G protein–mediated pathways in VSMCs is required for an appropriate vessel remodeling response in vascular diseases and suggest new approaches to modulate Sm differentiation in vascular pathologies.
机译:血管平滑肌(Sm)细胞(VSMC)具有高度的可塑性。它们的分化状态可以通过血清反应因子(SRF)来调节,后者可以通过募集辅因子来激活Sm分化和增殖相关的基因,例如心肌素家族成员和三元复合因子(TCFs)。然而,在体内条件下调节SRF依赖性VSMC分化的细胞外信号和上游信号机制了解甚少。在这项研究中,我们表明,由G蛋白G12 / G13和Gq / G11介导的收缩信号通路在不同的血管重塑模型中拮抗VSMC可塑性。在缺乏Gα12/Gα13或其效应子的小鼠中,RhoGEF蛋白LARG,RhoA依赖的SRF调节被阻断,VSMC分化标记基因的下调被增强。这伴随着过度的血管重塑和动脉粥样硬化加重。相比之下,Sm特异性Gαq/Gα11缺乏会阻止细胞外信号调节激酶1/2和TCF Elk-1的激活,从而响应于停血或血管损伤而降低VSMC去分化。这些数据表明,在血管疾病中适当的血管重塑反应需要VSMC中G蛋白介导的两种途径的平衡活性,并提出了调节血管病理中Sm分化的新方法。

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