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A branched-chain fatty acid is involved in post-embryonic growth control in parallel to the insulin receptor pathway and its biosynthesis is feedback-regulated in C. elegans

机译:分支链脂肪酸与胰岛素受体途径并行地参与胚胎后生长控制,其生物合成在秀丽隐杆线虫中被反馈调节。

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摘要

Growth and development of multicellular organisms are controlled by signaling systems that sense nutrition availability and metabolic status. We report a novel and surprising factor in Caenorhabditis elegans development, the monomethyl branched-chain fatty acid C17ISO, a product of leucine catabolism. We show here that C17ISO is an essential constituent in a novel mechanism that acts in parallel with the food-sensing DAF-2 (insulin receptor)/DAF-16 (FOXO) signaling pathway to promote post-embryonic development, and that the two pathways converge on a common target repressing cell cycle. We show that C17ISO homeostasis is regulated by a SREBP-1c-mediated feedback mechanism that is different from the SREBP-1c-mediated regulation of common fatty acid biosynthesis, as well as by peptide uptake and transport. Our data suggest that C17ISO may act as a chemical/nutritional factor in a mechanism that regulates post-embryonic development in response to the metabolic state of the organism.
机译:多细胞生物的生长和发育受信号系统的控制,该信号系统可感知营养的可获得性和代谢状态。我们报告秀丽隐杆线虫的发展,一个新的和令人惊讶的因素,单甲基支链脂肪酸C17ISO,亮氨酸分解代谢的产物。我们在这里显示C17ISO是新型机制中的重要组成部分,该机制与食物敏感性DAF-2(胰岛素受体)/ DAF-16(FOXO)信号传导途径并行,以促进胚后发育,并且这两个途径收敛于共同的靶标抑制细胞周期。我们显示,C17ISO动态平衡是由SREBP-1c介导的反馈机制调节的,该机制不同于SREBP-1c介导的常见脂肪酸生物合成的调节,以及肽的摄取和转运。我们的数据表明,C17ISO可能是一种机制中的化学/营养因子,该机制可响应生物体的代谢状态来调节胚胎后发育。

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