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mTORC1 Transcriptional Regulation of Ribosome Subunits, Protein Synthesis, and Molecular Transport in Primary Human Trophoblast Cells

机译:MTORC1核糖体亚基,蛋白质合成和原发性人滋养细胞中分子量的转录调节

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Mechanistic Target of Rapamycin Complex 1 (mTORC1) serves as positive regulator of placental nutrient transport and mitochondrial respiration. The role of mTORC1 signalling in modulating other placental functions is largely unexplored. We used gene array following the silencing of raptor to identify genes regulated by mTORC1 in primary human trophoblast (PHT) cells. Seven hundred and thirty-nine genes were differentially expressed; 487 genes were down-regulated and 252 up-regulated. Bioinformatic analyses demonstrated that inhibition of mTORC1 resulted in decreased expression of genes encoding ribosomal proteins in the 60S and 40S ribosome subunits. Furthermore, down-regulated genes were functionally enriched in genes involved in eIF2, sirtuin and mTOR signaling, mitochondrial function and glutamine, and Zinc transport. Stress response genes were enriched among up-regulated genes following mTORC1 inhibition. The protein expression of ribosomal proteins RPL26 (RPL26) and Ribosomal Protein S10 (RPS10) was decreased and positively correlated to mTORC1 signaling in human placentas collected from pregnancies complicated by intrauterine growth restriction (IUGR). In conclusion, mTORC1 signaling regulates the expression of trophoblast genes involved in ribosome and protein synthesis, mitochondrial function, lipid metabolism, nutrient transport, and angiogenesis, representing novel links between mTOR signaling and multiple placental functions critical for normal fetal growth and development.
机译:雷帕霉素复合物1(MTORC1)的机械靶标作为胎盘营养传输和线粒体呼吸的正调节剂。 MTORC1信令在调制其他胎盘功能时的作用在很大程度上是未开发的。我们在猛杆沉默之后使用基因阵列以鉴定原发性人滋养细胞(PHT)细胞中MTORC1调节的基因。七百三十九个基因差异表达; 487个基因下调,252个上调。生物信息分析证明MTORC1的抑制导致在60s和40s核糖体亚基中编码核糖体蛋白的基因表达下降。此外,在诸如EIF2,SIRTUIN和MTOR信号传导,线粒体功能和谷氨酰胺和锌转运中的基因中,在涉及的基因中富集下调基因。在MTORC1抑制后的上调基因中富集应激反应基因。核糖体蛋白RPL26(RPL26)和核糖体蛋白S10(RPS10)的蛋白质表达降低,与由宫内生长限制(IUGR)复杂的妊娠中的人胎盘中的MTORC1信号呈正相关。总之,MTORC1信号传导调节参与核糖体和蛋白质合成,线粒体功能,脂质代谢,营养转运和血管生成的滋养细胞基因的表达,代表MTOR信号传导和多种胎盘作用之间的新颖联系,对于正常胎儿生长和发育至关重要。

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