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Protocadherin-12 Cleavage Is a Regulated Process Mediated by ADAM10 Protein: EVIDENCE OF SHEDDING UP-REGULATION IN PRE-ECLAMPSIA*

机译:Protocadherin-12的切割是由ADAM10蛋白介导的调控过程:舒张前期补骨上调的证据*

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摘要

Protocadherins are a group of transmembrane proteins with homophilic binding activity, members of the cadherin superfamily. Apart from their role in adhesion, the cellular functions of protocadherins are essentially unknown. Protocadherin (PCDH)12 was previously identified in invasive trophoblasts and endothelial and mesangial cells in the mouse. Invalidation studies revealed that the protein was required for optimal placental development. In this article, we show that its human homolog is abundantly expressed in various trophoblast subtypes of the human placenta and at lower levels in endothelial cells. We demonstrate that PCDH12 is shed at high rates in vitro. The shedding mechanism depends on ADAM10 and results in reduced cellular adhesion in a cell migration assay. PCDH12 is subsequently cleaved by the γ-secretase complex, and its cytoplasmic domain is rapidly degraded by the proteasome. PCDH12 shedding is regulated by interlinked intracellular pathways, including those involving protein kinase C, PI3K, and cAMP, that either increase or inhibit cleavage. In endothelial cells, VEGF, prostaglandin E2, or histamine regulates PCDH12 shedding. The extracellular domain of PCDH12 was also detected in human serum and urine, thus providing evidence of PCDH12 shedding in vivo. Importantly, we observed an increase in circulating PCDH12 in pregnant women who later developed a pre-eclampsia, a frequent pregnancy syndrome and a major cause of maternal and fetal morbidity and mortality. In conclusion, we speculate that, like in mice, PCDH12 may play an important role in human placental development and that proteolytic cleavage in response to external factors, such as cytokines and pathological settings, regulates its activity.
机译:钙粘蛋白原是一组具有同源结合活性的跨膜蛋白,是钙粘蛋白超家族的成员。除了它们在粘附中的作用外,原钙粘蛋白的细胞功能基本上是未知的。原钙粘蛋白(PCDH)12先前已在小鼠的侵入性滋养细胞和内皮细胞和系膜细胞中鉴定。无效研究表明,蛋白质是最佳胎盘发育所必需的。在本文中,我们显示了其人类同源物在人类胎盘的各种滋养细胞亚型中大量表达,并在内皮细胞中较低水平表达。我们证明PCDH12在体外脱落率很高。脱落机制取决于ADAM10,并导致细胞迁移试验中细胞粘附减少。随后,PCDH12被γ-分泌酶复合物切割,其胞质结构域被蛋白酶体迅速降解。 PCDH12的脱落受相互联系的细胞内通路(包括涉及蛋白激酶C,PI3K和cAMP的通路)的调节,这些通路可以增加或抑制裂解。在内皮细胞中,VEGF,前列腺素E2或组胺调节PCDH12脱落。在人血清和尿液中也检测到PCDH12的胞外域,因此提供了PCDH12在体内脱落的证据。重要的是,我们观察到孕妇中循环PCDH12的增加,这些孕妇后来发展为先兆子痫,频繁的妊娠综合征以及母婴发病率和死亡率的主要原因。总之,我们推测,像在小鼠中一样,PCDH12可能在人胎盘发育中起重要作用,并且响应外部因素(例如细胞因子和病理学设置)的蛋白水解裂解会调节其活性。

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