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首页> 外文期刊>The journal of immunology >A Role for the Rho-p160 Rho Coiled-Coil Kinase Axis in the Chemokine Stromal Cell-Derived Factor-1α-Induced Lymphocyte Actomyosin and Microtubular Organization and Chemotaxis
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A Role for the Rho-p160 Rho Coiled-Coil Kinase Axis in the Chemokine Stromal Cell-Derived Factor-1α-Induced Lymphocyte Actomyosin and Microtubular Organization and Chemotaxis

机译:Rho-p160 Rho螺旋线圈激酶轴在趋化因子基质细胞衍生因子-1α诱导的淋巴细胞肌动球蛋白和微管组织和趋化性中的作用。

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The possible involvement of the Rho-p160ROCK (Rho coiled-coil kinase) pathway in the signaling induced by the chemokine Stromal cell-derived factor (SDF)-1α has been studied in human PBL. SDF-1α induced activation of RhoA, but not that of Rac. RhoA activation was followed by p160ROCK activation mediated by RhoA, which led to myosin light chain (MLC) phosphorylation, which was dependent on RhoA and p160ROCK activities. The kinetics of MLC activation was similar to that of RhoA and p160ROCK. The role of this cascade in overall cell morphology and functional responses to the chemokine was examined employing different chemical inhibitors. Inhibition of either RhoA or p160ROCK did not block SDF-1α-induced short-term actin polymerization, but induced the formation of long spikes arising from the cell body, which were found to be microtubule based. This morphological change was associated with an increase in microtubule instability, which argues for an active microtubule polymerization in the formation of these spikes. Inhibition of the Rho-p160ROCK-MLC kinase signaling cascade at different steps blocked lymphocyte migration and the chemotaxis induced by SDF-1α. Our results indicate that the Rho-p160ROCK axis plays a pivotal role in the control of the cell shape as a step before lymphocyte migration toward a chemotactic gradient.
机译:在人PBL中,已经研究了Rho-p160ROCK(Rho卷曲螺旋激酶)途径可能参与趋化因子基质细胞衍生因子(SDF)-1α诱导的信号传导。 SDF-1α诱导RhoA活化,但不诱导Rac活化。 RhoA激活之后是RhoA介导的p160ROCK激活,这导致肌球蛋白轻链(MLC)磷酸化,这取决于RhoA和p160ROCK活性。 MLC激活的动力学类似于RhoA和p160ROCK。使用不同的化学抑制剂检查了该级联在整体细胞形态和对趋化因子的功能反应中的作用。抑制RhoA或p160ROCK不会阻止SDF-1α诱导的短期肌动蛋白聚合,但会诱导由细胞体形成的长尖峰的形成,这是基于微管的。这种形态变化与微管不稳定性的增加有关,这表明在这些尖峰的形成中活性微管聚合。 Rho-p160ROCK-MLC激酶信号转导在不同步骤的抑制可阻止淋巴细胞迁移和SDF-1α诱导的趋化性。我们的结果表明,Rho-p160ROCK轴在控制细胞形状方面起着关键作用,这是淋巴细胞向趋化梯度迁移之前的一个步骤。

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