褐色脂肪组织中的脂滴可用于冷诱导的热发生。

IF 4.4 2区 化学 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY
Chandramohan Chitraju, Alexander W Fischer, Robert V Farese, Tobias C Walther
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引用次数: 45

摘要

棕色脂肪细胞将代谢能量作为甘油三酯(TG)储存在脂滴(LD)中。通过脂肪分解从棕色脂肪细胞LD释放的脂肪酸被认为激活并促进UCP1介导的产热。在这里,我们通过棕色脂肪组织(BAT)特异性缺失TG合成酶DGAT1和DGAT2(BA-DGAT-KO)来防止脂肪酸在小鼠棕色脂肪细胞中储存,从而验证了这一假设。尽管棕色脂肪细胞中没有TGs,但BAT是有功能的,BA-DGAT-KO小鼠在急性或慢性冷暴露期间保持恒温。作为对缺乏TG的明显适应,BA-DGAT-KO小鼠的棕色脂肪细胞似乎利用循环葡萄糖和脂肪酸以及储存的糖原来促进产热。此外,BA-DGAT-KO小鼠对饮食诱导的葡萄糖不耐受具有抵抗力,这可能是因为BAT增加了葡萄糖处理。我们得出的结论是,BAT中的TGs对冷诱导产热的贡献是可有可无的,至少在有其他燃料来源的情况下是这样。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Lipid Droplets in Brown Adipose Tissue Are Dispensable for Cold-Induced Thermogenesis.

Lipid Droplets in Brown Adipose Tissue Are Dispensable for Cold-Induced Thermogenesis.

Lipid Droplets in Brown Adipose Tissue Are Dispensable for Cold-Induced Thermogenesis.

Lipid Droplets in Brown Adipose Tissue Are Dispensable for Cold-Induced Thermogenesis.

Brown adipocytes store metabolic energy as triglycerides (TGs) in lipid droplets (LDs). Fatty acids released from brown adipocyte LDs by lipolysis are thought to activate and fuel UCP1-mediated thermogenesis. Here, we test this hypothesis by preventing fatty acid storage in murine brown adipocytes through brown adipose tissue (BAT)-specific deletions of the TG synthesis enzymes DGAT1 and DGAT2 (BA-DGAT KO). Despite the absence of TGs in brown adipocytes, BAT is functional, and BA-DGAT-KO mice maintain euthermia during acute or chronic cold exposure. As apparent adaptations to the lack of TG, brown adipocytes of BA-DGAT-KO mice appear to use circulating glucose and fatty acids, and stored glycogen, to fuel thermogenesis. Moreover, BA-DGAT-KO mice are resistant to diet-induced glucose intolerance, likely because of increased glucose disposal by BAT. We conclude that TGs in BAT are dispensable for its contribution to cold-induced thermogenesis, at least when other fuel sources are available.

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来源期刊
CiteScore
7.20
自引率
6.00%
发文量
810
期刊介绍: ACS Applied Polymer Materials is an interdisciplinary journal publishing original research covering all aspects of engineering, chemistry, physics, and biology relevant to applications of polymers. The journal is devoted to reports of new and original experimental and theoretical research of an applied nature that integrates fundamental knowledge in the areas of materials, engineering, physics, bioscience, polymer science and chemistry into important polymer applications. The journal is specifically interested in work that addresses relationships among structure, processing, morphology, chemistry, properties, and function as well as work that provide insights into mechanisms critical to the performance of the polymer for applications.
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