脂滴的自噬清除改变遗传性肥胖糖尿病小鼠模型中的代谢表型。

IF 3.7 Q2 GENETICS & HEREDITY Phenomics (Cham, Switzerland) Pub Date : 2022-11-19 eCollection Date: 2023-04-01 DOI:10.1007/s43657-022-00080-z
Ningxie Chen, Boxun Lu, Yuhua Fu
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引用次数: 1

摘要

脂滴(LD)是储存中性脂质的细胞器,其异常积聚与许多疾病有关,包括代谢紊乱,如肥胖和糖尿病。同时,LD在这些疾病中的潜在病理作用尚不清楚,可能是由于缺乏清除LD的化学生物学工具。我们最近开发了LD清除小分子化合物,Lipid Droplets·AuTophagy TEthering compounds(LD·ATTECs),它能够诱导db/db(C57BL/6J Leprdb/Leprdb)小鼠模型细胞和肝脏中LD的自噬清除,这是一种广泛用于肥胖糖尿病的遗传模型。同时,对代谢表型的潜在影响仍有待阐明。在这里,使用代谢笼测定法和血糖测定法,我们在db/db小鼠模型中对LD·ATTECs对LD的自噬降解作用进行了表型表征。研究表明,LD·ATTECs增加了小鼠的摄氧量和二氧化碳的释放,增强了动物的热量产生,部分增强了黑暗期的运动,降低了血糖水平,改善了胰岛素敏感性。总之,该研究在肥胖糖尿病小鼠模型中表征了LD·ATTECs诱导的代谢表型,揭示了LD自噬清除的新功能影响,并从表型角度深入了解了LD生物学和肥胖糖尿病的发病机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Autophagic Clearance of Lipid Droplets Alters Metabolic Phenotypes in a Genetic Obesity-Diabetes Mouse Model.

Lipid droplets (LDs) are intracellular organelles that store neutral lipids, and their aberrant accumulation is associated with many diseases including metabolic disorders such as obesity and diabetes. Meanwhile, the potential pathological contributions of LDs in these diseases are unclear, likely due to a lack of chemical biology tools to clear LDs. We recently developed LD-clearance small molecule compounds, Lipid Droplets·AuTophagy TEthering Compounds (LD·ATTECs), that are able to induce autophagic clearance of LDs in cells and in the liver of db/db (C57BL/6J Leprdb/Leprdb) mouse model, which is a widely used genetic model for obesity-diabetes. Meanwhile, the potential effects on the metabolic phenotype remain to be elucidated. Here, using the metabolic cage assay and the blood glucose assay, we performed phenotypic characterization of the effects of the autophagic degradation of LDs by LD·ATTECs in the db/db mouse model. The study reveals that LD·ATTECs increased the oxygen uptake of mice and the release of carbon dioxide, enhanced the heat production of animals, partially enhanced the exercise during the dark phase, decreased the blood glucose level and improved insulin sensitivity. Collectively, the study characterized the metabolic phenotypes induced by LD·ATTECs in an obesity-diabetes mouse model, revealing novel functional impacts of autophagic clearance of LDs and providing insights into LD biology and obesity-diabetes pathogenesis from the phenotypic perspective.

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