Hirano Yoshinori, Amano Yu, Yonemura Shigenobu, Hakoshima Toshio
Structural Biology Laboratory, Nara Institute of Science and Technology, Ikoma, Nara, Japan.
Electron Microscope Laboratory, RIKEN Center for Developmental Biology, Kobe, Hyogo, Japan.
Genes Cells. 2018 May;23(5):370-385. doi: 10.1111/gtc.12578. Epub 2018 Mar 15.
Mechanotransduction by α-catenin facilitates the force-dependent development of adherens junctions (AJs) by recruiting vinculin to reinforce actin anchoring of AJs. The α-catenin mechanotransducing action is facilitated by its force-sensing device region that autoinhibits the vinculin-binding site 1 (VBS1). Here, we report the high-resolution structure of the force-sensing device region of α-catenin, which shows the autoinhibited form comprised of helix bundles E, F and G. The cryptic VBS1 is embedded into helix bundle E stabilized by direct interactions with the autoinhibitory region forming helix bundles F and G. Our molecular dissection study showed that helix bundles F and G are stable in solution in each isolated form, whereas helix bundle E that contains VBS1 is unstable and intrinsically disordered in solution in the isolated form. We successfully identified key residues mediating the autoinhibition and produced mutated α-catenins that display variable force sensitivity and autoinhibition. Using these mutants, we demonstrate both in vitro and in vivo that, in the absence of this stabilization, the helix bundle containing VBS1 would adopt an unfolded form, thus exposing VBS for vinculin binding. We provide evidence for importance of mechanotransduction with the intrinsic force sensitivity for vinculin recruitment to adherens junctions of epithelial cell sheets with mutated α-catenins.
α-连环蛋白介导的机械转导通过招募纽蛋白来增强黏附连接(AJs)的肌动蛋白锚定,从而促进AJs的力依赖性发育。α-连环蛋白的机械转导作用由其力感应装置区域促进,该区域可自动抑制纽蛋白结合位点1(VBS1)。在此,我们报道了α-连环蛋白力感应装置区域的高分辨率结构,该结构显示了由螺旋束E、F和G组成的自动抑制形式。隐秘的VBS1嵌入到螺旋束E中,通过与形成螺旋束F和G的自动抑制区域直接相互作用而稳定。我们的分子剖析研究表明,螺旋束F和G在溶液中以各自分离的形式是稳定的,而包含VBS1的螺旋束E在溶液中以分离的形式是不稳定的且本质上是无序的。我们成功鉴定了介导自动抑制的关键残基,并产生了显示出可变力敏感性和自动抑制的突变α-连环蛋白。使用这些突变体,我们在体外和体内都证明,在没有这种稳定作用的情况下,包含VBS1的螺旋束将采取未折叠形式,从而暴露VBS以供纽蛋白结合。我们提供了证据,证明了具有内在力敏感性的机械转导对于用突变α-连环蛋白将纽蛋白募集到上皮细胞片的黏附连接中的重要性。