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首页> 外文期刊>Cell Regulation >ROCK1 but not ROCK2 contributes to RhoA signaling and NMIIA-mediated contractility at the epithelial zonula adherens
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ROCK1 but not ROCK2 contributes to RhoA signaling and NMIIA-mediated contractility at the epithelial zonula adherens

机译:ROCK1但不是ROCK2有助于RhoA信号传导和NMIIA介导的上皮小带黏附性收缩

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摘要

Rho kinases (ROCK1 and ROCK2) function downstream of the small GTPase RhoA to drive actomyosin cytoskeletal remodeling. It has often been believed that ROCK1 and ROCK2 may be functionally redundant, as they share a highly conserved kinase domain. However, in this study, we report differential functional effects for these ROCKs at the epithelial zonula adherens (ZA). Using specific siRNA, we found that ROCK1 depletion disrupted cadherin organization at the ZA, accompanied by loss of F-actin and NMIIA, whereas ROCK2 knockdown had no significant effect. Further, ROCK1, but not ROCK2, was necessary to stabilize GTP-RhoA at the ZA, thereby sustaining junctional tension and inhibiting intraepithelial cell movement. We also found that nonmuscle myosin IIA is a major determinant of ROCK1 cortical stability. Thus, despite sharing the catalytic domain with ROCK2, ROCK1 appears to be the dominant kinase essential for junctional integrity and contractile tension at epithelial ZA.
机译:Rho激酶(ROCK1和ROCK2)在小GTPase RhoA的下游起作用,以驱动肌动球蛋白细胞骨架重塑。人们通常认为ROCK1和ROCK2在功能上可能是多余的,因为它们共享高度保守的激酶结构域。但是,在这项研究中,我们报告了这些ROCK在上皮小带粘连(ZA)上的不同功能作用。使用特定的siRNA,我们发现ROCK1的消耗破坏了ZA的钙黏着蛋白组织,伴随着F-肌动蛋白和NMIIA的丢失,而ROCK2的敲低没有明显的作用。此外,ROCK1(而不是ROCK2)对于稳定ZA处的GTP-RhoA是必需的,从而维持连接张力并抑制上皮内细胞运动。我们还发现,非肌肉肌球蛋白IIA是ROCK1皮质稳定性的主要决定因素。因此,尽管与ROCK2共享催化结构域,但ROCK1似乎是上皮ZA上连接完整性和收缩张力必不可少的主要激酶。

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