Stappert J, Kemler R
Max-Planck-Institut für Immunbiologie, Freiburg.
Cell Adhes Commun. 1994 Aug;2(4):319-27. doi: 10.3109/15419069409014207.
Classical cadherins associate with three cytoplasmic proteins, termed alpha, -beta- and gamma-catenin. This association mediates the attachment of cadherins to the microfilament network, which is believed to be of major importance for cadherin function. Deletion of the carboxyterminal 72-amino acid residues of E-cadherin had been previously shown to prevent catenin binding. Here we have analyzed additional mutants of E-cadherin with deletions within this region and identified a core region of 30 amino acids (E-cadherin pos. 832-862) essential for the interaction with catenins. Phosphorylation analysis of wild-type and mutant E-cadherin indicates that the catenin-binding domain is highly phosphorylated. In particular, the 30 amino acid region contains 8 serine residues which are well conserved among cadherins. To elucidate whether phosphorylation might be important for cadherin-catenin complex formation, site-directed mutagenesis experiments were performed. Partial substitutions of up to 5 of the 8 serine residues in the cluster had no influence on E-cadherin-catenin complex formation and E-cadherin mediated cell adhesion, although phosphorylation of E-cadherin was reduced. In contrast, substitution of the whole serine cluster completely abolished phosphorylation and affected complex formation with catenins. These results suggest that E-cadherin-catenin interaction may be regulated by phosphorylation of the catenin-binding domain, which might represent one molecular mechanism to regulate cadherin mediated cell adhesion.
经典钙黏蛋白与三种胞质蛋白(α -连环蛋白、β -连环蛋白和γ -连环蛋白)相结合。这种结合介导了钙黏蛋白与微丝网络的附着,而这被认为对钙黏蛋白的功能至关重要。先前已表明,E -钙黏蛋白羧基末端72个氨基酸残基的缺失会阻止连环蛋白结合。在此,我们分析了该区域内有缺失的E -钙黏蛋白的其他突变体,并确定了一个30个氨基酸的核心区域(E -钙黏蛋白第832 - 862位),该区域对于与连环蛋白的相互作用至关重要。野生型和突变型E -钙黏蛋白的磷酸化分析表明,连环蛋白结合结构域高度磷酸化。特别是,这30个氨基酸区域含有8个丝氨酸残基,在钙黏蛋白中高度保守。为了阐明磷酸化是否对钙黏蛋白 - 连环蛋白复合物的形成很重要,我们进行了定点诱变实验。该簇中多达5个丝氨酸残基的部分替换对E -钙黏蛋白 - 连环蛋白复合物的形成和E -钙黏蛋白介导的细胞黏附没有影响,尽管E -钙黏蛋白的磷酸化有所降低。相反,整个丝氨酸簇的替换完全消除了磷酸化,并影响了与连环蛋白的复合物形成。这些结果表明,E -钙黏蛋白 - 连环蛋白的相互作用可能受连环蛋白结合结构域磷酸化的调节,这可能代表了一种调节钙黏蛋白介导的细胞黏附的分子机制。