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E-钙黏蛋白细胞内结构域的磷酸化潜力对于发育和黏附连接生物合成动力学调节至关重要。

Phosphorylation potential of E-Cadherin intracellular domain is essential for development and adherens junction biosynthetic dynamics regulation.

作者信息

Chen Yi-Jiun, Huang Juan, Huang Lynn, Austin Erin, Hong Yang

机构信息

Department of Cell Biology, University of Pittsburgh Medical School, Pittsburgh, PA 15261, USA.

Department of Biotechnology, School of Basic Medical Sciences, Nanjing Medical University, Nanjing 211166, People's Republic of China.

出版信息

Development. 2017 Apr 1;144(7):1242-1248. doi: 10.1242/dev.141598. Epub 2017 Feb 20.

Abstract

Phosphorylation of a highly conserved serine cluster in the intracellular domain of E-Cadherin is essential for binding to β-Catenin In cultured cells, phosphorylation of specific serine residues within the cluster is also required for regulation of adherens junction (AJ) stability and dynamics. However, much less is known about how such phosphorylation of E-Cadherin regulates AJ formation and dynamics In this report, we generated an extensive array of E-Cadherin (DE-Cad) endogenous knock-in alleles that carry mutations targeting this highly conserved serine cluster. Analyses of these mutations suggest that the overall phosphorylation potential, rather than the potential site-specific phosphorylation, of the serine cluster enhances the recruitment of β-Catenin by DE-Cad Moreover, phosphorylation potential of the serine cluster only moderately increases the level of β-Catenin in AJs and is in fact dispensable for AJ formation Nonetheless, phosphorylation-dependent recruitment of β-Catenin is essential for development, probably by enhancing the interactions between DE-Cad and α-Catenin. In addition, several phospho-mutations dramatically reduced the biosynthetic turnover rate of DE-Cad during apical-basal polarization, and such biosynthetically stable DE-Cad mutants specifically rescued the polarity defects in embryonic epithelia lacking the polarity proteins Stardust and Crumbs.

摘要

E-钙黏蛋白胞内结构域中高度保守的丝氨酸簇的磷酸化对于与β-连环蛋白的结合至关重要。在培养细胞中,该簇内特定丝氨酸残基的磷酸化对于调节黏附连接(AJ)的稳定性和动力学也是必需的。然而,关于E-钙黏蛋白的这种磷酸化如何调节AJ的形成和动力学,人们了解得要少得多。在本报告中,我们生成了一系列广泛的E-钙黏蛋白(DE-Cad)内源性敲入等位基因,这些等位基因携带针对这个高度保守的丝氨酸簇的突变。对这些突变的分析表明,丝氨酸簇的整体磷酸化潜力,而非潜在的位点特异性磷酸化,增强了DE-Cad对β-连环蛋白的招募。此外,丝氨酸簇的磷酸化潜力仅适度增加AJ中β-连环蛋白的水平,实际上对于AJ的形成是可有可无的。尽管如此,β-连环蛋白的磷酸化依赖性招募对于发育至关重要,可能是通过增强DE-Cad与α-连环蛋白之间的相互作用。此外,几个磷酸化突变显著降低了顶端-基部极化过程中DE-Cad的生物合成周转率,并且这种生物合成稳定的DE-Cad突变体特异性地挽救了缺乏极性蛋白星尘和面包屑的胚胎上皮中的极性缺陷。

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