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Structure of Shroom domain 2 reveals a three-segmented coiled-coil required for dimerization, Rock binding, and apical constriction

机译:Shroom domain 2的结构揭示了二聚化,岩石结合和顶端收缩所需的三段卷曲螺旋

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Shroom (Shrm) proteins are essential regulators of cell shape and tissue morpho-logy during animal development that function by interacting directly with the coiled-coil region of Rho kinase (Rock). The Shrm–Rock interaction is sufficient to direct Rock subcellular localization and the subsequent assembly of contractile actomyosin networks in defined subcellular locales. However, it is unclear how the Shrm–Rock interaction is regulated at the molecular level. To begin investigating this issue, we present the structure of Shrm domain 2 (SD2), which mediates the interaction with Rock and is required for Shrm function. SD2 is a unique three-segmented dimer with internal symmetry, and we identify conserved residues on the surface and within the dimerization interface that are required for the Rock–Shrm interaction and Shrm activity in vivo. We further show that these residues are critical in both vertebrate and invertebrate Shroom proteins, indicating that the Shrm–Rock signaling module has been functionally and molecularly conserved. The structure and biochemical analysis of Shrm SD2 indicate that it is distinct from other Rock activators such as RhoA and establishes a new paradigm for the Rock-mediated assembly of contractile actomyosin networks.
机译:Shroom(Shrm)蛋白是动物发育过程中细胞形状和组织形态学的重要调节剂,其通过与Rho激酶(Rock)的卷曲螺旋区域直接相互作用而起作用。 Shrm-Rock相互作用足以指导岩石亚细胞定位以及随后在确定的亚细胞区域中收缩性放线菌素网络的组装。但是,尚不清楚如何在分子水平上调节Shrm-Rock相互作用。为了开始研究这个问题,我们介绍了Shrm域2(SD2)的结构,该结构介导了与Rock的交互作用,并且是Shrm功能所必需的。 SD2是具有内部对称性的独特的三段二聚体,我们可以确定表面上和二聚体界面内的保守残基,这些残基是体内Rock-Shrm相互作用和Shrm活性所需的。我们进一步表明,这些残基在脊椎动物和无脊椎动物的Shroom蛋白中都至关重要,表明Shrm-Rock信号传导模块在功能和分子上均已保守。 Shrm SD2的结构和生化分析表明,它与其他Rock激活剂(如RhoA)不同,并为Rock介导的收缩性肌动球蛋白网络的组装建立了新的范例。

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