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αE-catenin is an autoinhibited molecule that coactivates vinculin

机译:αE-catenin是一种可自动激活纽蛋白的自动抑制分子

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摘要

E-catenin, an essential component of the adherens junction, interacts with the classical cadherin-β-catenin complex and with F-actin, but its precise role is unknown. αE-catenin also binds to the Fact in-binding protein vinculin, which also appears to be important in junction assembly. Vinculin and αE-catenin are homologs that contain a series of helical bundle domains, D1-D5. We mapped the vinculin-binding site to a sequence in D3a comprising the central two helices of a four-helix bundle. The crystal structure of this pep-tide motif bound to vinculin D1 shows that the two helices adopt a parallel, colinear arrangement suggesting that the αE-catenin D3a bundle must unfold in order to bind vinculin. We show that αE-catenin D3 binds strongly to vinculin, whereas larger fragments and full-length αE-catenin bind approximately 1,000-fold more weakly. Thus, intramolecular interactions within αE-catenin inhibit binding to vinculin. The actin-binding activity of vinculin is inhibited by an intramolecular interaction between the head (D1-D4) and the actin-binding D5 tail. In the absence of F-actin, there is no detectable binding of αE-catenin D3 to full-length vinculin; however, αE-catenin D3 promotes binding of vinculin to F-actin whereas full-length αE-catenin does not. These findings support the combinatorial or "coincidence" model of activation in which binding of high-affinity proteins to the vinculin head and tail is required to shift the con-formational equilibrium of vinculin from a closed, autoinhibited state to an open, stable F-actin-binding state. The data also imply that αE-catenin must be activated in order to bind to vinculin.
机译:E-catenin是粘附连接的重要组成部分,它与经典的钙粘蛋白-β-catenin复合物和F-actin相互作用,但其确切作用尚不清楚。 αE-catenin还与Fact结合蛋白纽蛋白结合,这在连接组装中也很重要。 Vinculin和αE-catenin是包含一系列螺旋束结构域D1-D5的同源物。我们将纽蛋白结合位点映射到D3a中的一个序列,该序列包含四螺旋束的中心两个螺旋。绑定到新蛋白D1的这种肽序基序的晶体结构表明,两个螺旋采用平行共线排列,这表明αE-cateninD3a束必须展开才能结合新蛋白。我们显示,αE-cateninD3与纽蛋白紧密结合,而较大的片段和全长αE-catenin较弱结合约1,000倍。因此,αE-连环蛋白内的分子内相互作用抑制了与纽蛋白的结合。头蛋白(D1-D4)与肌动蛋白结合D5尾部之间的分子内相互作用抑制了新蛋白的肌动蛋白结合活性。在不存在F-肌动蛋白的情况下,αE-cateninD3与全长纽蛋白没有可检测的结合。然而,αE-cateninD3促进纽蛋白与F-肌动蛋白的结合,而全长αE-catenin则不。这些发现支持激活的组合或“巧合”模型,在该模型中,需要高亲和力蛋白与纽扣蛋白头和尾的结合,才能将纽扣蛋白的构象平衡从封闭的自抑制状态转变为开放的,稳定的F-肌动蛋白结合状态。数据还暗示,αE-catenin必须被激活才能与纽蛋白结合。

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    Departments of Structural Biology and Molecular and Cellular Physiology, Stanford University School of Medicine, 299 Campus Drive, Stanford, CA 94305;

    Departments of Structural Biology and Molecular and Cellular Physiology, Stanford University School of Medicine, 299 Campus Drive, Stanford, CA 94305;

    Program on Infectious Diseases, Sanford-Burnham Medical Research Institute, 10901 North Torrey Pines Road, La Jolla, CA 92037;

    Program on Infectious Diseases, Sanford-Burnham Medical Research Institute, 10901 North Torrey Pines Road, La Jolla, CA 92037;

    Program on Infectious Diseases, Sanford-Burnham Medical Research Institute, 10901 North Torrey Pines Road, La Jolla, CA 92037;

    Program on Infectious Diseases, Sanford-Burnham Medical Research Institute, 10901 North Torrey Pines Road, La Jolla, CA 92037;

    Departments of Structural Biology and Molecular and Cellular Physiology, Stanford University School of Medicine, 299 Campus Drive, Stanford, CA 94305;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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  • 入库时间 2022-08-18 00:40:26

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