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首页> 外文期刊>Molecular biology of the cell >DIPA-family coiled-coils bind conserved isoform-specific head domain of p120-catenin family:potential roles in hydrocephalus and heterotopia
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DIPA-family coiled-coils bind conserved isoform-specific head domain of p120-catenin family:potential roles in hydrocephalus and heterotopia

机译:DIPA家族螺旋线圈结合p120-catenin家族的保守亚型特异性头部结构域:在脑积水和异位症中的潜在作用

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摘要

p120-catenin (p120) modulates adherens junction (AJ) dynamics by controlling the stability of classical cadherins. Among all p120 isoforms, p120-3A and p120-1A are the most prevalent. Both stabilize cadherins, but p120-3A is preferred in epithelia, whereas p120-1A takes precedence in neurons, fibroblasts, and macrophages. During epithelial-to-mesenchymal transition, E- to N-cadherin switching coincides with p120-3A to -1A alternative splicing. These isoforms differ by a 101-amino acid "head domain" comprising the p120-1A N-terminus. Although its exact role is unknown, the head domain likely mediates developmental and cancer-associated events linked to p120-1A expression (e.g., motility, invasion, metastasis). Here we identified delta-interacting protein A (DIPA) as the first head domain-specific binding partner and candidate mediator of isoform 1A activity. DIPA colocalizes with AJs in a p120-1A- but not 3A-dependent manner. Moreover, all DIPA family members (Ccdc85a, Ccdc85b/DIPA, and Ccdc85c) interact reciprocally with p120 family members (p120, δ-catenin, p0071, and ARVCF), suggesting significant functional overlap. During zebrafish neural tube development, both knockdown and overexpression of DIPA phenocopy N-cadherin mutations, an effect bearing functional ties to a reported mouse hydrocephalus phenotype associated with Ccdc85c. These studies identify a novel, highly conserved interaction between two protein families that may participate either individually or collectively in N-cadherin-mediated development.
机译:p120-catenin(p120)通过控制经典钙粘着蛋白的稳定性来调节粘附连接(AJ)动力学。在所有p120亚型中,p120-3A和p120-1A最普遍。两者都能稳定钙粘着蛋白,但在上皮细胞中首选p120-3A,而在神经元,成纤维细胞和巨噬细胞中p120-1A优先。在上皮到间充质过渡期间,E-向N-钙粘着蛋白的转换与p120-3A至-1A的选择性剪接相吻合。这些同工型的区别在于包含p120-1A N端的101个氨基酸的“头部结构域”。尽管其确切作用尚不清楚,但头部结构域可能介导与p120-1A表达相关的发育和癌症相关事件(例如,运动,侵袭,转移)。在这里,我们确定了δ相互作用蛋白A(DIPA)作为第一个头域特异性结合伙伴和同工型1A活性的候选介质。 DIPA以p120-1A依赖性但不依赖3A的方式与AJ共定位。此外,所有DIPA家族成员(Ccdc85a,Ccdc85b / DIPA和Ccdc85c)与p120家族成员(p120,δ-catenin,p0071和ARVCF)相互交互,表明存在明显的功能重叠。在斑马鱼神经管发育过程中,DIPA表型N-钙粘蛋白突变的敲低和过表达都与已知的与Ccdc85c相关的小鼠脑积水表型有功能联系。这些研究确定了两个蛋白质家族之间的新颖,高度保守的相互作用,它们可以单独或共同参与N-钙粘蛋白介导的发育。

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