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钙网织蛋白通过调控 BeWo 细胞中 E-钙黏蛋白的合成和转运调控合胞体化。

Calreticulin Regulates Syncytialization Through Control of the Synthesis and Transportation of E-Cadherin in BeWo Cells.

机构信息

Department of Obstetrics and Gynecology, Wakayama Medical University, Wakayama, Japan.

Department of Biochemistry, Wakayama Medical University, Wakayama, Japan.

出版信息

Endocrinology. 2019 Feb 1;160(2):359-374. doi: 10.1210/en.2018-00868.

Abstract

During placental development, mononuclear cytotrophoblasts differentiate and fuse to syncytiotrophoblasts (STBs) to form syncytia, which secrete human chorionic gonadotropin (hCG). Decreased maternal perfusion of the placenta, which leads to placental dysfunction, induces changes in trophoblast syncytialization. Our previous study showed that calreticulin (CRT), a Ca2+-binding molecular chaperone found in the endoplasmic reticulum, is expressed in the human placenta and is involved in regulating extravillous trophoblast invasion, although its role in villous trophoblasts remains unclear. In this study, we investigated the functional role of CRT in trophoblast differentiation using the human trophoblast-like cell line BeWo, in which CRT gene expression was knocked down. We found that CRT was highly expressed in human third-trimester placentas and mainly localized in STBs. The fetal growth restriction group exhibited significantly lower CRT expression levels than did the control group. In BeWo cells, CRT knockdown markedly suppressed forskolin-induced cell fusion and β-hCG secretion. As for the mechanism responsible for these effects, the cell surface expression of E-cadherin, a key adhesion molecule related to syncytialization, was decreased, and E-cadherin accumulated adjacent to the Golgi apparatus in the CRT-knockdown cells, which led to dysfunctional cell-to-cell adhesion. Additionally, metabolic labeling and a pulse-chase study revealed that the protein expression of E-cadherin was suppressed at the translational level in the CRT-knockdown cells. Collectively, these results demonstrate that CRT regulates syncytialization by ensuring appropriate control of both the synthesis and transportation of E-cadherin, suggesting that CRT expression is important for placental development during pregnancy.

摘要

在胎盘发育过程中,单核滋养细胞分化并融合为合体滋养细胞(STB)以形成合胞体,合胞体分泌人绒毛膜促性腺激素(hCG)。胎盘的母体灌注减少,导致胎盘功能障碍,诱导滋养层合胞体化发生变化。我们之前的研究表明,钙网织蛋白(CRT),一种在内质网中发现的 Ca2+结合分子伴侣,在人胎盘中有表达,并且参与调节绒毛外滋养细胞浸润,尽管其在绒毛滋养细胞中的作用尚不清楚。在这项研究中,我们使用人绒毛膜滋养细胞样细胞系 BeWo 研究了 CRT 在滋养细胞分化中的功能作用,在此细胞系中敲低了 CRT 基因表达。我们发现 CRT 在人类妊娠晚期胎盘组织中高度表达,主要定位于 STB 中。胎儿生长受限组的 CRT 表达水平明显低于对照组。在 BeWo 细胞中,CRT 敲低明显抑制了 forskolin 诱导的细胞融合和β-hCG 分泌。至于这些作用的机制,与合胞化相关的关键粘附分子 E-钙粘蛋白的细胞表面表达减少,并且 CRT 敲低细胞中的 E-钙粘蛋白在高尔基体附近积累,导致细胞间粘附功能障碍。此外,代谢标记和脉冲追踪研究表明,在 CRT 敲低细胞中,E-钙粘蛋白的蛋白表达在翻译水平受到抑制。总之,这些结果表明 CRT 通过确保 E-钙粘蛋白的合成和运输的适当控制来调节合胞化,表明 CRT 表达对妊娠期间胎盘发育很重要。

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