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Deficiency in hepatic ATP-citrate lyase affects VLDL-triglyceride mobilization and liver fatty acid composition in mice

机译:肝ATP柠檬酸裂解酶的缺乏会影响小鼠的VLDL-甘油三酸酯动员和肝脂肪酸组成

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摘要

ATP-citrate lyase (ACL) is a key lipogenic enzyme that converts citrate in the cytoplasm to acetyl-CoA, the initial precursor that yields malonyl-CoA for fatty acid biosynthesis. As cytosolic citrate is derived from the tricarboxylic acid cycle in the mitochondrion, ACL catalyzes a critical reaction linking cellular glucose catabolism and lipid synthesis. To investigate the metabolic action of ACL in lipid homeostasis, we specifically knocked down hepatic ACL expression by adenovirus-mediated RNA interference in mice maintained on a low-fat or high-fat diet. Hepatic ACL abrogation markedly reduced the liver abundance of both acetyl-CoA and malonyl-CoA regardless of dietary fat intake, which was paralleled with decreases in circulating levels of triglycerides and free fatty acids. Moreover, hepatic ACL knockdown resulted in diet-dependent changes in the expression of other lipogenic enzymes, accompanied by altered fatty acid compositions in the liver. Interestingly, ACL deficiency led to reduced serum VLDL-triglyceride levels but increased hepatic triglyceride content, resulting at least partially from decreased hepatic secretion of VLDL-containing apolipoprotein B-48. Together, these results demonstrate that hepatic ACL suppression exerts profound effects on triglyceride mobilization as well as fatty acid compositions in the liver, suggesting an important role for ACL in lipid metabolism.
机译:ATP柠檬酸裂解酶(ACL)是一种关键的脂肪酶,可将细胞质中的柠檬酸转化为乙酰辅酶A,乙酰辅酶A是产生丙二酰辅酶A进行脂肪酸生物合成的初始前体。由于胞质柠檬酸来源于线粒体中的三羧酸循环,因此ACL催化了连接细胞葡萄糖分解代谢和脂质合成的关键反应。为了研究ACL在脂质稳态中的代谢作用,我们通过低脂或高脂饮食维持的小鼠中腺病毒介导的RNA干扰特异地敲低了肝ACL表达。肝ACL废除显着降低了乙酰CoA和丙二酰CoA的肝脏丰度,而与饮食中的脂肪摄入量无关,这与甘油三酸酯和游离脂肪酸循环水平的降低相平行。此外,肝脏ACL抑制导致饮食中其他脂肪酶的表达变化,并伴随着肝脏脂肪酸成分的改变。有趣的是,ACL缺乏导致血清VLDL-甘油三酯水平降低,但肝甘油三酯含量增加,这至少部分是由于含VLDL的载脂蛋白B-48的肝分泌减少所致。在一起,这些结果表明,肝脏ACL抑制对甘油三酸酯的动员以及肝脏中的脂肪酸组成具有深远的影响,表明ACL在脂质代谢中具有重要作用。

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