首页> 外文期刊>The Journal of biological chemistry >Nuclear Factor of Activated T Cells c1 Mediates p21-activated Kinase 1 Activation in the Modulation of Chemokine-induced Human Aortic Smooth Muscle Cell F-actin Stress Fiber Formation, Migration, and Proliferation and Injury-induced Vascular Wall Remodeling
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Nuclear Factor of Activated T Cells c1 Mediates p21-activated Kinase 1 Activation in the Modulation of Chemokine-induced Human Aortic Smooth Muscle Cell F-actin Stress Fiber Formation, Migration, and Proliferation and Injury-induced Vascular Wall Remodeling

机译:活性T细胞的核因子C1介导P21-活化激酶1激活在趋化因子诱导的人体主动脉平滑肌细胞F-肌动蛋白应激纤维形成,迁移和增殖和损伤诱导的血管壁改造中

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Recent literature suggests that cyclin-dependent kinases (CDKs) mediate cell migration. However, the mechanisms were not known. Therefore, the objective of this study is to test whether cyclin/CDKs activate Pak1, an effector of Rac1, whose involvement in the modulation of cell migration and proliferation is well established. Monocyte chemotactic protein 1 (MCP1) induced Pak1 phosphorylation/activation in human aortic smooth muscle cells (HASMCs) in a delayed time-dependent manner. MCP1 also stimulated F-actin stress fiber formation in a delayed manner in HASMCs, as well as the migration and proliferation of these cells. Inhibition of Pak1 suppressed MCP1-induced HASMC F-actin stress fiber formation, migration, and proliferation. MCP1 induced cyclin D1 expression as well as CDK6 and CDK4 activities, and these effects were dependent on activation of NFATc1. Depletion of NFATc1, cyclin D1, CDK6, or CDK4 levels attenuated MCP1-induced Pak1 phosphorylation/activation and resulted in decreased HASMC F-actin stress fiber formation, migration, and proliferation. CDK4, which appeared to be activated downstream of CDK6, formed a complex with Pak1 in response to MCP1. MCP1 also activated Rac1 in a time-dependent manner, and depletion/inhibition of its levels/activation abrogated MCP1-induced NFATc1-cyclin D1-CDK6-CDK4-Pak1 signaling and, thereby, decreased HASMC F-actin stress fiber formation, migration, and proliferation. In addition, smooth muscle-specific deletion of NFATc1 led to decreased cyclin D1 expression and CDK6, CDK4, and Pak1 activities, resulting in reduced neointima formation in response to injury. Thus, these observations reveal that Pak1 is a downstream effector of CDK4 and Rac1-dependent, NFATc1-mediated cyclin D1 expression and CDK6 activity mediate this effect. In addition, smooth muscle-specific deletion of NFATc1 prevented the capacity of vascular smooth muscle cells for MCP-1-induced activation of the cyclin D1-CDK6-CDK4-Pak1 signaling axis, affecting their migration and proliferation in vitro and injury-induced neointima formation in vivo.
机译:最近的文献表明细胞周期蛋白依赖性激酶(CDK)介导细胞迁移。但是,该机制尚不清楚。因此,本研究的目的是测试细胞周期蛋白/ CDKS是否激活PAK1,RAC1的效应器,其参与细胞迁移和增殖的调节是很好的。单核细胞趋化蛋白1(MCP1)以延迟时间依赖的方式诱导人主动脉平滑肌细胞(HASMC)中的PAK1磷酸化/活化。 MCP1还刺激了以延迟的方式刺激了F-肌动蛋白应激纤维形成,以及这些细胞的迁移和增殖。抑制PAK1抑制MCP1诱导的HASMC F-Actin应力纤维形成,迁移和增殖。 MCP1诱导细胞周期蛋白D1表达以及CDK6和CDK4活性,这些效果取决于NFATC1的活化。 NFATC1,细胞周期蛋白D1,CDK6或CDK4水平的耗尽衰减MCP1诱导的PAK1磷酸化/活化,并导致HASMC F-Actin应力纤维形成,迁移和增殖降低。似乎在CDK6下游被激活的CDK4形成了响应MCP1的PAK1与PAK1的复合物。 MCP1还以时间依赖的方式激活RAC1,并且耗尽/抑制其水平/活化废除MCP1诱导的NFATC1-Cyclin D1-CDK6-CDK4-PAK1信号传导,并从而降低HASMC F-Actin应力纤维形成,迁移,和增殖。此外,NFATC1的平滑肌肉缺失导致Cyclin D1表达和CDK6,CDK4和PAK1活性降低,导致对损伤的损伤产生降低的内部形成。因此,这些观察结果表明,PAK1是CDK4和RAC1依赖性的下游效应器,NFATC1介导的细胞周期蛋白D1表达和CDK6活性介导这种效果。此外,NFATC1的平滑肌肉缺失阻止了血管平滑肌细胞的能力,用于CycP-1诱导的细胞周期蛋白D1-CDK6-CDK4-PAK1信号轴的活化,影响其迁移和损伤诱导的内部迁移体内形成。

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