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ADAM12-directed ectodomain shedding of E-cadherin potentiates trophoblast fusion

机译:E-钙黏着蛋白的ADAM12定向胞外域脱落增强滋养细胞融合

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摘要

Trophoblasts, placental cells of epithelial lineage, undergo extensive differentiation to form the cellular components of the placenta. Trophoblast progenitor cell differentiation into the multinucleated syncytiotrophoblast is a key developmental process required for placental function, where defects in syncytiotrophoblast formation and turnover associate with placental pathologies and link to poor pregnancy outcomes. The cellular and molecular processes governing syncytiotrophoblast formation are poorly understood, but require the activation of pathways that direct cell fusion. The protease, A Disintegrin and Metalloproteinase 12 (ADAM12), controls cell fusion in myoblasts and is highly expressed in the placenta localizing to multiple trophoblast populations. However, the importance of ADAM12 in regulating trophoblast fusion is unknown. Here, we describe a function for ADAM12 in regulating trophoblast fusion. Using two distinct trophoblast models of cell fusion, we show that ADAM12 is dynamically upregulated and is under the transcriptional control of protein kinase A. siRNA-directed loss of ADAM12 impedes spontaneous fusion of primary cytotrophoblasts, whereas overexpression of the secreted variant, ADAM12S, potentiates cell fusion in the Bewo trophoblast cell line. Mechanistically, both ectopic and endogenous levels of ADAM12 were shown to control trophoblast fusion through E-cadherin ectodomain shedding and remodeling of intercellular boundaries. This study describes a novel role for ADAM12 in placental development, specifically highlighting its importance in controlling the differentiation of villous cytotrophoblasts into multinucleated cellular structures. Moreover, this work identifies E-cadherin as a novel ADAM12 substrate, and highlights the significance that cell adhesion molecule ectodomain shedding has in normal development.
机译:滋养细胞是上皮细胞的胎盘细胞,经过广泛的分化形成胎盘的细胞成分。滋养层祖细胞分化为多核合体滋养层细胞是胎盘功能所需的关键发育过程,其中合体滋养层细胞形成和更新的缺陷与胎盘病理相关,并与不良妊娠结局相关。人们很少了解控制合体滋养层细胞形成的细胞和分子过程,但是需要激活指导细胞融合的途径。蛋白酶,一种解毒蛋白和金属蛋白酶12(ADAM12),控制成肌细胞中的细胞融合,并在胎盘中定位于多个滋养细胞群体中高表达。但是,ADAM12在调节滋养细胞融合中的重要性尚不清楚。在这里,我们描述了ADAM12在调节滋养细胞融合中的功能。使用两个不同的细胞融合滋养细胞模型,我们显示ADAM12是动态上调的,并且受蛋白激酶A的转录控制。siRNA指导的ADAM12丢失会阻碍原代细胞滋养细胞的自发融合,而分泌型变体ADAM12S的过度表达会增强Bewo滋养细胞细胞系中的细胞融合。从机理上讲,异位和内源水平的ADAM12均通过E-钙粘蛋白胞外域脱落和细胞间边界重塑来控制滋养细胞融合。这项研究描述了ADAM12在胎盘发育中的新作用,特别强调了其在控制绒毛滋养细胞分化为多核细胞结构中的重要性。此外,这项工作确定E-钙粘着蛋白作为一种新型ADAM12底物,并强调了细胞粘附分子胞外域脱落在正常发育中的重要性。

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