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首页> 外文期刊>Human Molecular Genetics >Hyperphosphorylation of polycystin-2 at a critical residue in disease reveals an essential role for polycystin-1-regulated dephosphorylation
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Hyperphosphorylation of polycystin-2 at a critical residue in disease reveals an essential role for polycystin-1-regulated dephosphorylation

机译:疾病关键部位的多囊藻蛋白2的过度磷酸化揭示了多囊藻蛋白1调节的去磷酸化的重要作用

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摘要

Mutations in PKD1 (85%) or PKD2 (15%) account for almost all cases of autosomal dominant polycystic kidney disease (ADPKD). The ADPKD proteins, termed as polycystin-1 (PC1) and polycystin-2 (PC2), interact via their C-termini to form a receptor-ion channel complex whose function and regulation are not fully understood. Here, we report the first phosphorylated residue (Ser829) in PC2, whose dephosphorylation is mediated by PC1 binding through the recruitment of protein phosphatase-1 alpha (PP1α). Using a new phosphospecific antibody (pPC2) to this site, we demonstrate that Ser829 is phosphorylated by Protein kinase A (PKA) but remains constitutively phosphorylated in cells and tissues lacking PC1. cAMP increased pSer829 basolateral localization in MDCK cells in a time dependent manner and was essential for pronephric development in Xenopus embryos. When constitutively expressed, a complex phenotype associated with enhanced ATP-dependent ER Ca2+ release and loss of growth suppression was observed in cycling cells. These results reveal a reciprocal functional link between PC1 and PC2 which is critically dependent on their interaction. Unopposed cAMP stimulated hyperphosphorylation of PC2 in the absence of functional PC1 could contribute to cyst initiation in PKD1 patients and represents a new molecular paradigm in understanding ADPKD pathogenesis.
机译:PKD1(85%)或PKD2(15%)的突变几乎占了常染色体显性遗传多囊肾病(ADPKD)的所有情况。 ADPKD蛋白,称为多囊藻蛋白1(PC1)和多囊藻蛋白2(PC2),通过其C末端相互作用形成受体离子通道复合物,其功能和调控尚不完全清楚。在这里,我们报告PC2中的第一个磷酸化的残基(Ser829),其去磷酸化是通过募集蛋白磷酸酶1α(PP1α)的PC1结合来介导的。使用针对此位点的新的磷酸特异性抗体(pPC2),我们证明Ser829被蛋白激酶A(PKA)磷酸化,但在缺乏PC1的细胞和组织中仍然组成性地被磷酸化。 cAMP以时间依赖性方式增加了MDCK细胞中pSer829基底外侧的定位,对于非洲爪蟾胚胎的前肾发育至关重要。当组成性表达时,在循环细胞中观察到与增强的ATP依赖性ER Ca2 +释放和生长抑制丧失相关的复杂表型。这些结果揭示了PC1和PC2之间的相互功能联系,这在很大程度上取决于它们之间的相互作用。在没有功能性PC1的情况下,不受抑制的cAMP刺激PC2的过度磷酸化可能有助于PKD1患者的囊肿起始,并且代表了了解ADPKD发病机理的新分子范例。

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