胎盘Cdc42和Rac1的下调将mTORC2抑制与人类宫内生长受限中滋养细胞氨基酸运输减少联系起来。

Thomas Jansson, Marisol Castillo-Castrejon, Madhulika B Gupta, Theresa L Powell, Fredrick J Rosario
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引用次数: 11

摘要

宫内生长受限(IUGR)增加了围产期并发症以及生命后期代谢和心血管疾病的风险。合胞滋养细胞(ST)是人胎盘的运输上皮,氨基酸转运蛋白异构体在ST质膜中的表达减少被认为是IUGR的原因之一。胎盘机制靶雷帕霉素复合物2 (mTORC2)信号在IUGR中被抑制,并调节关键氨基酸转运体(AAT)异构体向ST质膜的运输;然而,分子机制尚不清楚。Cdc42和Rac1是调节肌动蛋白结合蛋白的rho - gtpase,从而调节肌动蛋白细胞骨架的结构和动力学。我们假设mTORC2抑制通过下调Cdc42和Rac1介导的质膜AAT表达和原代人滋养细胞(PHT)氨基酸摄取降低。mTORC2的抑制降低了Cdc42和Rac1的表达,而mTORC1的抑制不降低。Cdc42和Rac1的沉默抑制了System L和A转运体的活性,并显著减少了LAT1 (System L isoform)和SNAT2 (System A isoform)向质膜的运输。通过沉默载体抑制mTORC2未能降低Cdc42/Rac1激活后的AAT。胎盘Cdc42和Rac1蛋白表达在IUGR中下调,并与胎盘mTORC2信号转导呈正相关。综上所述,mTORC2通过调节Cdc42和Rac1来调节PHT细胞中的AAT转运。人IUGR中胎盘mTORC2抑制可能通过下调Cdc42和Rac1介导的胎盘氨基酸转移减少和胎儿生长减慢。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Down-regulation of placental Cdc42 and Rac1 links mTORC2 inhibition to decreased trophoblast amino acid transport in human intrauterine growth restriction.

Intrauterine growth restriction (IUGR) increases the risk for perinatal complications and metabolic and cardiovascular disease later in life. The syncytiotrophoblast (ST) is the transporting epithelium of the human placenta, and decreased expression of amino acid transporter isoforms in the ST plasma membranes is believed to contribute to IUGR. Placental mechanistic target of rapamycin Complex 2 (mTORC2) signaling is inhibited in IUGR and regulates the trafficking of key amino acid transporter (AAT) isoforms to the ST plasma membrane; however, the molecular mechanisms are unknown. Cdc42 and Rac1 are Rho-GTPases that regulate actin-binding proteins, thereby modulating the structure and dynamics of the actin cytoskeleton. We hypothesized that inhibition of mTORC2 decreases AAT expression in the plasma membrane and amino acid uptake in primary human trophoblast (PHT) cells mediated by down-regulation of Cdc42 and Rac1. mTORC2, but not mTORC1, inhibition decreased the Cdc42 and Rac1 expression. Silencing of Cdc42 and Rac1 inhibited the activity of the System L and A transporters and markedly decreased the trafficking of LAT1 (System L isoform) and SNAT2 (System A isoform) to the plasma membrane. mTORC2 inhibition by silencing of rictor failed to decrease AAT following activation of Cdc42/Rac1. Placental Cdc42 and Rac1 protein expression was down-regulated in human IUGR and was positively correlated with placental mTORC2 signaling. In conclusion, mTORC2 regulates AAT trafficking in PHT cells by modulating Cdc42 and Rac1. Placental mTORC2 inhibition in human IUGR may contribute to decreased placental amino acid transfer and reduced fetal growth mediated by down-regulation of Cdc42 and Rac1.

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