首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >A focal adhesion protein-based mechanochemical checkpoint regulates cleft progression during branching morphogenesis.
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A focal adhesion protein-based mechanochemical checkpoint regulates cleft progression during branching morphogenesis.

机译:基于粘着斑蛋白的机械化学检查点在分支形态发生过程中调节left裂的进展。

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Cleft formation is the initial step of branching morphogenesis in many organs. We previously demonstrated that ROCK 1 regulates a nonmuscle myosin II-dependent mechanochemical checkpoint to transition initiated clefts to progressing clefts in developing submandibular salivary glands. Here, we report that ROCK-mediated integrin activation and subsequent formation of focal adhesion complexes comprise this mechanochemical checkpoint. Inhibition of ROCK1 and nonmuscle myosin II activity decreased integrin beta1 activation in the cleft region and interfered with localization and activation of focal adhesion complex proteins, such as focal adhesion kinase (FAK). Inhibition of FAK activity also prevented cleft progression, by disrupting recruitment of the focal adhesion proteins talin and vinculin and subsequent fibronectin assembly in the cleft region while decreasing ERK1/2 activation. These results demonstrate that inside-out integrin signaling leading to a localized recruitment of active FAK-containing focal adhesion protein complexes generates a mechanochemical checkpoint that facilitates progression of branching morphogenesis. Developmental Dynamics 240:2069-2083, 2011. (c) 2011 Wiley-Liss, Inc.
机译:left裂形成是许多器官中分支形态发生的第一步。我们以前证明ROCK 1调节非肌肉肌球蛋白II依赖的机械化学检查点,以在发育中的颌下唾液腺中将引发的裂隙转变为进行性裂隙。在这里,我们报告说,ROCK介导的整合素激活和随后形成的粘着斑复合物构成了这一机械化学检查点。 ROCK1和非肌肉肌球蛋白II活性的抑制作用降低了裂隙区域中整联蛋白beta1的活化,并干扰了黏着斑复合蛋白(例如黏着斑激酶(FAK))的定位和活化。 FAK活性的抑制还通过破坏粘着斑蛋白塔林和纽蛋白的募集以及随后裂隙区域中纤连蛋白的组装,同时降低ERK1 / 2的活化来阻止裂隙的进展。这些结果证明,由内而外的整联蛋白信号传导导致局部吸收活性FAK的粘着斑蛋白复合物,从而产生了促进分支形态发生发展的机械化学检查点。 Developmental Dynamics 240:2069-2083,2011.(c)2011 Wiley-Liss,Inc.

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