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首页> 外文期刊>Journal of cell biology >Distinct signaling mechanisms regulate migration in unconfined versus confined spaces
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Distinct signaling mechanisms regulate migration in unconfined versus confined spaces

机译:不同的信号传导机制调节无限制空间与有限空间中的迁移

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Using a microchannel assay, we demonstrate that cells adopt distinct signaling strategies to modulate cell migration in different physical microenvironments. We studied α4β1 integrin–mediated signaling, which regulates cell migration pertinent to embryonic development, leukocyte trafficking, and melanoma invasion. We show that α4β1 integrin promotes cell migration through both unconfined and confined spaces. However, unlike unconfined (2D) migration, which depends on enhanced Rac1 activity achieved by preventing α4/paxillin binding, confined migration requires myosin II–driven contractility, which is increased when Rac1 is inhibited by α4/paxillin binding. This Rac1–myosin II cross talk mechanism also controls migration of fibroblast-like cells lacking α4β1 integrin, in which Rac1 and myosin II modulate unconfined and confined migration, respectively. We further demonstrate the distinct roles of myosin II isoforms, MIIA and MIIB, which are primarily required for confined and unconfined migration, respectively. This work provides a paradigm for the plasticity of cells migrating through different physical microenvironments.
机译:使用微通道测定,我们证明细胞采用不同的信号传导策略来调节不同物理微环境中的细胞迁移。我们研究了α4β1整合素介导的信号传导,该信号传导调节与胚胎发育,白细胞运输和黑素瘤侵袭有关的细胞迁移。我们显示α4β1整合素通过无限制和密闭空间促进细胞迁移。然而,与无限制(2D)迁移不同,后者依赖于通过防止α4/ paxillin结合而实现的增强的Rac1活性,而受限迁移则需要肌球蛋白II驱动的收缩力,而当Rac1被α4/ paxillin结合抑制时,收缩力会增加。这种Rac1-肌球蛋白II的串扰机制还控制缺乏α4β1整联蛋白的成纤维细胞样细胞的迁移,其中Rac1和肌球蛋白II分别调节无限制和受限的迁移。我们进一步证明了肌球蛋白II亚型,MIIA和MIIB的独特作用,这分别是有限制和无限制迁移所必需的。这项工作为通过不同的物理微环境迁移的细胞的可塑性提供了范例。

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