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脂肪耗尽的果蝇中的代谢重编程揭示了甘油三酯与糖原的相互作用,并将cDIP鉴定为能量代谢的新调节因子。

Metabolic rewiring in fat-depleted Drosophila reveals triglyceride:glycogen crosstalk and identifies cDIP as a new regulator of energy metabolism.

作者信息

Henne W Mike, Ugrankar-Banerjee Rupali, Tran Son, Bowerman Jade, Paul Blessy, Zacharias Lauren, Mathews Thomas, DeBerardinis Ralph

机构信息

UT Southwestern Medical Center.

University of Texas Southwestern.

出版信息

Res Sq. 2024 Oct 18:rs.3.rs-4505077. doi: 10.21203/rs.3.rs-4505077/v1.

Abstract

Tissues store excess nutrients as triglyceride or glycogen, but how these reserves are sensed and communicate remains poorly understood. Here we identify molecular players orchestrating this metabolic balance during fat depletion. We show fat body (FB)-specific depletion of fatty acyl-CoA synthase FASN1 in Drosophila causes near-complete fat loss and metabolic remodeling that dramatically elevates glycogen storage and carbohydrate metabolism. Proteomics and metabolomics identify key factors necessary for rewiring including glycolysis enzymes and target-of-brain-insulin (tobi). FASN1-deficient flies are viable but starvation sensitive, oxidatively stressed, and infertile. We also identify CG10824/cDIP as upregulated in FASN1-depleted Drosophila. cDIP is a leucine-rich-repeat protein with homology to secreted adipokines that fine-tune energy signaling, and is required for fly development in the absence of FASN1. Collectively, we show fat-depleted Drosophila rewire their metabolism to complete development, and identify cDIP as a putative new cytokine that signals fat insufficiency and may regulate energy homeostasis.

摘要

组织将多余的营养物质储存为甘油三酯或糖原,但这些储备如何被感知以及进行信号传递仍知之甚少。在这里,我们确定了在脂肪消耗过程中协调这种代谢平衡的分子参与者。我们发现,果蝇脂肪体(FB)中脂肪酸酰基辅酶A合成酶FASN1的特异性缺失会导致近乎完全的脂肪损失和代谢重塑,从而显著提高糖原储存和碳水化合物代谢。蛋白质组学和代谢组学确定了重新布线所需的关键因素,包括糖酵解酶和脑胰岛素靶点(tobi)。缺乏FASN1的果蝇是存活的,但对饥饿敏感、有氧化应激且不育。我们还发现CG10824/cDIP在FASN1缺失的果蝇中上调。cDIP是一种富含亮氨酸重复序列的蛋白质,与分泌型脂肪因子具有同源性,可微调能量信号,并且在没有FASN1的情况下是果蝇发育所必需的。总体而言,我们表明脂肪耗尽的果蝇会重新调整其代谢以完成发育,并确定cDIP是一种假定的新细胞因子,可发出脂肪不足的信号并可能调节能量稳态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7958/11527204/b62c0edc5b18/nihpp-rs4505077v1-f0001.jpg

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