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PACSIN2 regulates cell adhesion during gastrulation in Xenopus laevis.

机译:PACSIN2在非洲爪蟾的胃形成过程中调节细胞粘附。

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We previously identified the adaptor protein PACSIN2 as a negative regulator of ADAM13 proteolytic function. In Xenopus embryos, PACSIN2 is ubiquitously expressed, suggesting that PACSIN2 may control other proteins during development. To investigate this possibility, we studied PACSIN2 function during Xenopus gastrulation and in XTC cells. Our results show that PACSIN2 is localized to the plasma membrane via its coiled-coil domain. We also show that increased levels of PACSIN2 in embryos inhibit gastrulation, fibronectin (FN) fibrillogenesis and the ability of ectodermal cells to spread on a FN substrate. These effects require PACSIN2 coiled-coil domain and are not due to a reduction of FN or integrin expression and/or trafficking. The expression of a Mitochondria Anchored PACSIN2 (PACSIN2-MA) sequesters wild type PACSIN2 to mitochondria, and blocks gastrulation without interfering with cell spreading or FN fibrillogenesis but perturbs both epiboly and convergence/extension. In XTC cells, the over-expression of PACSIN2 but not PACSIN2-MA prevents the localization of integrin beta1 to focal adhesions (FA) and filamin to stress fiber. PACSIN2-MA prevents filamin localization to membrane ruffles but not to stress fiber. We propose that PACSIN2 may regulate gastrulation by controlling the population of activated alpha5beta1 integrin and cytoskeleton strength during cell movement.
机译:我们以前鉴定了衔接蛋白PACSIN2是ADAM13蛋白水解功能的负调节剂。在非洲爪蟾胚胎中,PACSIN2被普遍表达,表明PACSIN2可能在发育过程中控制其他蛋白质。为了研究这种可能性,我们研究了非洲爪蟾胃造血过程中和XTC细胞中PACSIN2的功能。我们的结果表明,PACSIN2通过其卷曲螺旋结构域定位于质膜。我们还表明,增加的PACSIN2在胚胎中的水平抑制了胃形成,纤连蛋白(FN)的原纤维形成和外胚层细胞在FN基质上扩散的能力。这些作用需要PACSIN2卷曲螺旋结构域,而不是由于FN或整联蛋白表达和/或运输减少所致。线粒体锚定的PACSIN2(PACSIN2-MA)的表达将野生型PACSIN2螯合到线粒体,并阻断了胃形成,而不会干扰细胞扩散或FN纤维原纤维形成,但会扰乱外延和会聚/延伸。在XTC细胞中,PACSIN2的过表达而不是PACSIN2-MA的过表达阻止了整联蛋白beta1定位于粘着斑(FA)和丝蛋白定位于应力纤维。 PACSIN2-MA可防止纤维蛋白定位于膜皱褶,但不会使纤维应力。我们建议,PACSIN2可以通过控制细胞运动过程中激活的alpha5beta1整合素的数量和细胞骨架强度来调节胃泌素。

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