生物
氨基酸
mTORC1型
生物发生
生物化学
营养感应
秀丽隐杆线虫
脂肪酸
溶酶体
代谢物
机制(生物学)
PI3K/AKT/mTOR通路
细胞生物学
亮氨酸
信号转导
基因
认识论
哲学
酶
作者
Mengnan Zhu,Fukang Teng,Na Li,Li Zhang,Shuxian Zhang,Fan Xu,Jing Shao,Haipeng Sun,Huanhu Zhu
标识
DOI:10.1016/j.devcel.2021.09.010
摘要
Animals have developed various nutrient-sensing mechanisms for survival under fluctuating environmental conditions. Although extensive cell-culture-based analyses have identified diverse mediators of amino acid sensing upstream of mTOR, studies using animal models to examine intestine-initiated amino acid sensing mechanisms under specific physiological conditions are lacking. Here, we developed a Caenorhabditis elegans model to examine the impact of amino acid deficiency on development. We discovered a leucine-derived monomethyl branched-chain fatty acid and its downstream metabolite, glycosphingolipid, which critically mediates the overall amino acid sensing by intestinal and neuronal mTORC1, which in turn regulates postembryonic development at least partly by controlling protein translation and ribosomal biogenesis. Additional data suggest that a similar mechanism may operate in mammals. This study uncovers an amino-acid-sensing mechanism mediated by a lipid biosynthesis pathway.
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