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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Immunomodulatory drugs reorganize cytoskeleton by modulating Rho GTPases.
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Immunomodulatory drugs reorganize cytoskeleton by modulating Rho GTPases.

机译:免疫调节药物通过调节Rho GTPases重组细胞骨架。

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IMiDs immunomodulatory drugs, including lenalidomide and pomalidomide represent a novel class of small molecule anticancer and anti-inflammatory drugs with broad biologic activities. However, the molecular mechanism through which these drugs exert their effects is largely undefined. Using pomalidomide and primary human monocytes, we report that pomalidomide rapidly and selectively activated RhoA and Rac1, but not Cdc42 or Ras, in the absence of any costimulation. Consistent with the activation of Rho GTPases, we found that pomalidomide enhanced F-actin formation, stabilized microtubules, and increased cell migration, all of which were blocked by selective inhibitors of ROCK1 and Rac1. Further, we showed that in Swiss 3T3 cells, pomalidomide only activated RhoA, not Rac1 or Cdc42, and potently induced stress fiber formation. The pomalidomide effect on actin cytoskeleton was blocked by the ROCK1 inhibitor, but not Rac1 inhibitor. Finally, we demonstrated that pomalidomide was able to regulate the activity of Rho GTPases and the formation of F-actin in primary human T cells as it did in monocytes and showed that the activation of RhoA was essential for pomalidomide-induced interleukin-2 expression in T cells. These novel activities provide what we believe a critical mechanism by which IMiDs drugs function as therapeutic immunomodulatory agents.
机译:IMiDs免疫调节药物,包括来那度胺和泊马利度胺,代表了一类具有广泛生物学活性的新型小分子抗癌和抗炎药。但是,这些药物发挥作用的分子机制在很大程度上尚不清楚。我们使用pomalidomide和原代人单核细胞,报告pomalidomide快速且选择性地激活RhoA和Rac1,而不激活Cdc42或Ras,无需任何共刺激。与Rho GTPases的激活一致,我们发现pomalidomide增强了F-肌动蛋白的形成,稳定了微管并增加了细胞迁移,所有这些都被ROCK1和Rac1的选择性抑制剂所阻断。此外,我们显示在瑞士3T3细胞中,波马洛米特仅激活RhoA,而不激活Rac1或Cdc42,并有效诱导应激纤维形成。泊马度胺对肌动蛋白细胞骨架的作用被ROCK1抑制剂阻断,但未被Rac1抑制剂阻断。最后,我们证明了pomalidomide能够像在单核细胞中一样调节原代人T细胞中Rho GTPases的活性和F-actin的形成,并表明RhoA的激活对于pomalidomide诱导的白细胞介素2表达至关重要。 T细胞。这些新颖的活动提供了我们认为IMiDs药物用作治疗性免疫调节剂的关键机制。

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