Lsp2 将 mTORC1 与 TOP mRNA 翻译及果蝇寿命联系起来
Lsp2 links mTORC1 to TOP mRNA translation and lifespan in Drosophila
mTORC1(一种感知营养、调控代谢与衰老的蛋白复合物)能优先调控含 TOP 基序的 mRNA(主要编码核糖体蛋白)的翻译,但该功能对雷帕霉素不敏感,其生理调控和与寿命的关系不明。研究者在果蝇中发现,原本被认为是储存蛋白的 Lsp2,其实也是脂肪组织效应因子和 mTORC1 的反馈激活因子。敲除 Lsp2 可显著延长寿命且不影响繁殖,机制上通过 4E-BP 依赖方式选择性降低 TOP mRNA 整体翻译。该机制与雷帕霉素的作用不同,揭示了营养调控寿命的新通路。
为什么推荐给您:发现全新寿命调控因子及独立于雷帕霉素的机制,属重要新机制。
不需要生物学背景,多打比方
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摘要Abstract
Mechanistic target of rapamycin complex 1 (mTORC1) senses nutrient availability to orchestrate metabolic processes that are crucial for physiological homeostasis and ageing1. mTORC1 preferentially regulates the translation of 5'-terminal oligopyrimidine (TOP) motif-containing mRNAs (which encode mainly ribosomal proteins) through the 4E-BP translational repressor2; however, this function of mTORC1 is resistant to rapamycin inhibition3. TOP mRNAs are exceptionally abundant, and thus impose a major translational burden on cells, but how their translation is physiologically tuned and linked with lifespan remains unclear. Here we show that Lsp2, which was previously known to be a storage protein4, is also an adipose effector and feedback activator of mTORC1 that modulates lifespan in Drosophila. Expression of Lsp2 is induced by essential amino acids through mTORC1 and is gated by additional signals of nutrient sufficiency. Genetic ablation of Lsp2 robustly extends lifespan without impairing key life history traits such as reproduction. Translatomic profiling shows that loss of Lsp2 selectively reduces global TOP mRNA translation in a 4E-BP-dependent manner, thereby extending lifespan through a mechanism distinct from the effects of rapamycin. Evolutionarily, TOP motifs co-emerged with 4E-BP and are present in nearly all Drosophila ribosomal protein mRNAs. Moreover, we show that the role of TOP motifs in translational control extends to Drosophila. Collectively, our findings reveal a nutrient-induced physiological factor that amplifies mTORC1 output in TOP mRNA translation and regulates organismal longevity.