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后生动物中的细胞间黏附依赖于α-连环蛋白·β-连环蛋白结合界面的进化保守特征。

Cell-cell adhesion in metazoans relies on evolutionarily conserved features of the α-catenin·β-catenin-binding interface.

作者信息

Shao Xiangqiang, Kang Hyunook, Loveless Timothy, Lee Gyu Rie, Seok Chaok, Weis William I, Choi Hee-Jung, Hardin Jeff

机构信息

From the Program in Genetics.

Department of Zoology, and.

出版信息

J Biol Chem. 2017 Oct 6;292(40):16477-16490. doi: 10.1074/jbc.M117.795567. Epub 2017 Aug 25.

Abstract

Stable tissue integrity during embryonic development relies on the function of the cadherin·catenin complex (CCC). The CCC is a useful paradigm for analyzing requirements for specific interactions among the core components of the CCC, and it provides a unique opportunity to examine evolutionarily conserved mechanisms that govern the interaction between α- and β-catenin. HMP-1, unlike its mammalian homolog α-catenin, is constitutively monomeric, and its binding affinity for HMP-2/β-catenin is higher than that of α-catenin for β-catenin. A crystal structure shows that the HMP-1·HMP-2 complex forms a five-helical bundle structure distinct from the structure of the mammalian α-catenin·β-catenin complex. Deletion analysis based on the crystal structure shows that the first helix of HMP-1 is necessary for binding HMP-2 avidly and for efficient recruitment of HMP-1 to adherens junctions in embryos. HMP-2 Ser-47 and Tyr-69 flank its binding interface with HMP-1, and we show that phosphomimetic mutations at these two sites decrease binding affinity of HMP-1 to HMP-2 by 40-100-fold experiments using HMP-2 S47E and Y69E mutants showed that they are unable to rescue () mutants, suggesting that phosphorylation of HMP-2 on Ser-47 and Tyr-69 could be important for regulating CCC formation in Our data provide novel insights into how cadherin-dependent cell-cell adhesion is modulated in metazoans by conserved elements as well as features unique to specific organisms.

摘要

胚胎发育过程中稳定的组织完整性依赖于钙黏蛋白-连环蛋白复合体(CCC)的功能。CCC是分析CCC核心组分之间特定相互作用需求的有用范例,它为研究调控α-连环蛋白和β-连环蛋白之间相互作用的进化保守机制提供了独特机会。与哺乳动物同源物α-连环蛋白不同,HMP-1组成型单体存在,并且其与HMP-2/β-连环蛋白的结合亲和力高于α-连环蛋白与β-连环蛋白的结合亲和力。晶体结构显示,HMP-1·HMP-2复合体形成一种不同于哺乳动物α-连环蛋白·β-连环蛋白复合体结构的五螺旋束结构。基于晶体结构的缺失分析表明,HMP-1的第一个螺旋对于 avidly结合HMP-2以及将HMP-1有效招募到胚胎中的黏着连接是必需的。HMP-2的Ser-47和Tyr-69位于其与HMP-1的结合界面两侧,我们通过使用HMP-2 S47E和Y69E突变体的实验表明,这两个位点的拟磷酸化突变使HMP-1与HMP-2的结合亲和力降低40至100倍,表明它们无法挽救()突变体,这表明HMP-2在Ser-47和Tyr-69上的磷酸化对于调节CCC形成可能很重要。我们的数据为后生动物中依赖钙黏蛋白的细胞间黏附如何通过保守元件以及特定生物体特有的特征进行调节提供了新的见解。

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