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Tubulin detyrosination promotes human trophoblast syncytium formation

机译:小管蛋白脱酪氨酸促进人滋养细胞合胞体形成

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Human trophoblast syncytialization is one of the most important yet least understood events during placental development. In this study, we found that detyrosinated α -tubulin (detyr- α -tub), which is negatively regulated by tubulin tyrosine ligase (TTL), was elevated during human placental cytotrophoblast fusion. Correspondingly, relatively high expression of TTL protein was observed in first-trimester human placental cytotrophoblast cells, but fusing trophoblast cells exhibited much lower levels of TTL. Notably, fusion of preeclamptic cytotrophoblast cells was compromised but could be partially rescued by knockdown of TTL levels. Mechanistically, chronic downregulation of TTL in trophoblast cells resulted in significantly elevated expression of detyr- α -tub. Restoration of detyr- α -tub thus contributed to the cell surface localization of the fusogenic protein Syncytin-2 and the gap junction protein Connexin 43 (Cx43), which in turn promoted successful fusion between trophoblast cells. Taken together, the results suggest that tubulin detyrosination plays an essential role in human trophoblast fusogenic protein aggregation and syncytialization. Insufficient tubulin detyrosination leads to defects in syncytialization and potentially to the onset of preeclampsia.
机译:人滋养细胞合胞体化是胎盘发育过程中最重要但最不为人所知的事件之一。在这项研究中,我们发现在人胎盘细胞滋养层融合过程中,被微管蛋白酪氨酸连接酶(TTL)负调控的脱酪氨酸α-微管蛋白(detyr-α-tub)升高。相应地,在妊娠早期的人胎盘滋养层细胞中观察到相对较高的TTL蛋白表达,但是融合滋养层细胞表现出低得多的TTL水平。值得注意的是,子痫前细胞滋养层细胞的融合受到损害,但可以通过降低TTL水平来部分挽救。从机制上讲,滋养层细胞中TTL的慢性下调导致detyr-α-tub的表达明显升高。因此,tytyr-α-tub的恢复有助于融合蛋白Syncytin-2和间隙连接蛋白Connexin 43(Cx43)在细胞表面的定位,进而促进了滋养层细胞之间的成功融合。两者合计,结果表明微管蛋白脱酪氨酸在人类滋养细胞融合蛋白的聚集和合胞体化中起重要作用。微管蛋白脱酪氨酸不足会导致合胞体化缺陷,并可能导致先兆子痫。

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