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The triglyceride synthesis enzymes DGAT1 and DGAT2 have distinct and overlapping functions in adipocytes

机译:甘油三酸酯合成酶DGAT1和DGAT2在脂肪细胞中具有独特且重叠的功能

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摘要

Mammals store metabolic energy as triacylglycerols (TGs) in adipose tissue. TG synthesis is catalyzed by the evolutionarily unrelated acyl-CoA:diacylglycerol acyltransferase (DGAT) enzymes DGAT1 and DGAT2, which catalyze the same reaction and account for nearly all TG synthesis. The reasons for their convergent evolution to synthesize TGs remain unclear. Mice lacking DGAT1 are viable with reduced fat stores of TGs, whereas DGAT2 KO mice die postnatally just after birth with >90% reduction of TGs, suggesting that DGAT2 is the predominant enzyme for TG storage. To better understand the functional differences between the DGATs, we studied mice fed chow or high-fat diets lacking either enzyme in adipose tissue. Unexpectedly, mice lacking DGAT2 in adipocytes have normal TG storage and glucose metabolism on regular or high-fat diets, indicating DGAT2 is not essential for fat storage. In contrast, mice lacking DGAT1 in adipocytes have normal TG storage on a chow diet but moderately decreased body fat accompanied by glucose intolerance when challenged with a high-fat diet. The latter changes were associated with the activation of ER stress pathways. We conclude that DGAT1 and DGAT2 can largely compensate for each other for TG storage but that DGAT1 uniquely has an important role in protecting the ER from the lipotoxic effects of high-fat diets.
机译:哺乳动物在脂肪组织中以三酰甘油(TGs)形式存储代谢能。 TG的合成是由进化上无关的酰基辅酶A:二酰基甘油酰基转移酶(DGAT)酶DGAT1和DGAT2催化的,它们催化相同的反应,几乎涵盖了所有TG的合成。它们聚合进化以合成TG的原因尚不清楚。缺乏DGAT1的小鼠在减少TG的脂肪储存方面是可行的,而DGAT2 KO小鼠出生后刚出生时死亡,TG减少> 90%,这表明DGAT2是TG储存的主要酶。为了更好地理解DGAT之间的功能差异,我们研究了在脂肪组织中饲喂缺乏两种酶的食物或高脂饮食的小鼠。出乎意料的是,在脂肪细胞中缺乏DGAT2的小鼠在正常或高脂饮食中具有正常的TG储存和葡萄糖代谢,这表明DGAT2对于脂肪储存不是必需的。相比之下,在脂肪细胞中缺乏DGAT1的小鼠在日常饮食中具有正常的TG储存,但是当受到高脂饮食的挑战时,体内脂肪会适度减少,并伴有葡萄糖不耐症。后者的变化与内质网应激通路的激活有关。我们得出的结论是,DGAT1和DGAT2可以在很大程度上补偿TG的存储,但是DGAT1在保护ER免受高脂饮食的脂毒性作用方面具有独特的重要作用。

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