首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Protein Kinase N1 Is a Novel Substrate of NFATc1-mediated Cyclin D1-CDK6 Activity and Modulates Vascular Smooth Muscle Cell Division and Migration Leading to Inward Blood Vessel Wall Remodeling
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Protein Kinase N1 Is a Novel Substrate of NFATc1-mediated Cyclin D1-CDK6 Activity and Modulates Vascular Smooth Muscle Cell Division and Migration Leading to Inward Blood Vessel Wall Remodeling

机译:蛋白激酶N1是NFATc1介导的细胞周期蛋白D1-CDK6活性的新型底物并调节血管平滑肌细胞分裂和迁移导致内向血管壁重塑。

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摘要

Toward understanding the mechanisms of vascular wall remodeling, here we have studied the role of NFATc1 in MCP-1-induced human aortic smooth muscle cell (HASMC) growth and migration and injury-induced rat aortic wall remodeling. We have identified PKN1 as a novel downstream target of NFATc1-cyclin D1/CDK6 activity in mediating vascular wall remodeling following injury. MCP-1, a potent chemoattractant protein, besides enhancing HASMC motility, also induced its growth, and these effects require NFATc1-dependent cyclin D1 expression and CDK4/6 activity. In addition, MCP-1 induced PKN1 activation in a sustained and NFATc1-cyclin D1/CDK6-dependent manner. Furthermore, PKN1 activation is required for MCP-1-induced HASMC growth and migration. Balloon injury induced PKN1 activation in NFAT-dependent manner and pharmacological or dominant negative mutant-mediated blockade of PKN1 function or siRNA-mediated down-regulation of its levels substantially suppressed balloon injury-induced smooth muscle cell migration and proliferation resulting in reduced neointima formation. These novel findings suggest that PKN1 plays a critical role in vascular wall remodeling, and therefore, it could be a promising new target for the next generation of drugs for vascular diseases, particularly restenosis following angioplasty, stent implantation, or vein grafting.
机译:为了了解血管壁重塑的机制,在这里我们研究了NFATc1在MCP-1诱导的人主动脉平滑肌细胞(HASMC)生长和迁移以及损伤诱导的大鼠主动脉壁重塑中的作用。我们已确定PKN1为NFATc1-cyclin D1 / CDK6活性的新下游靶标,可在损伤后介导血管壁重塑。 MCP-1是一种有效的趋化蛋白,除了可以增强HASMC的运动能力外,还可以诱导其生长,而这些作用还需要NFATc1依赖性细胞周期蛋白D1表达和CDK4 / 6活性。此外,MCP-1以持续且NFATc1-cyclin D1 / CDK6依赖性的方式诱导PKN1活化。此外,MCP-1诱导的HASMC的生长和迁移需要PKN1激活。球囊损伤以NFAT依赖性方式诱导PKN1活化,药理学或显性负突变体介导的PKN1功能阻断或siRNA介导的其水平下调基本上抑制了球囊损伤诱导的平滑肌细胞迁移和增殖,从而导致新内膜形成减少。这些新发现表明,PKN1在血管壁重塑中起着至关重要的作用,因此,它可能是下一代血管疾病药物的有希望的新靶标,特别是在血管成形术,支架植入或静脉移植后的再狭窄。

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