首页> 外文OA文献 >Hormone-sensitive lipase deficiency in mouse islets abolishes neutral cholesterol ester hydrolase activity but leaves lipolysis, acylglycerides, fat oxidation, and insulin secretion intact.
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Hormone-sensitive lipase deficiency in mouse islets abolishes neutral cholesterol ester hydrolase activity but leaves lipolysis, acylglycerides, fat oxidation, and insulin secretion intact.

机译:小鼠胰岛中对激素敏感的脂肪酶缺乏症消除了中性胆固醇酯水解酶的活性,但使脂解,酰基甘油酯,脂肪氧化和胰岛素分泌保持完整。

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摘要

Lipids are thought to serve as coupling factors in insulin secretion. Hormone-sensitive lipase (HSL) is expressed in pancreatic beta-cells and could potentially regulate insulin secretion via mobilization of stored triglycerides. Here, we examined the impact of HSL deficiency on fuel metabolism and insulin secretion in mouse islets. Lack of HSL resulted in abrogation of neutral cholesterol ester hydrolase activity, whereas diglyceride lipase activity remained intact. Although glucose stimulates lipolysis in rat islets, elevation of glucose with or without addition of cAMP failed to increase lipolysis in mouse islets regardless of genotype, as indicated by release of glycerol from islets. Storage of lipids, assayed as total acylglycerides, was unaltered in HSL null islets, and oxidation of fatty acids or glucose was not different. The intracellular rise in Ca(2+) triggered by glucose and its subsequent oscillations was unaffected in HSL null islets. Accordingly, insulin secretion in static incubations of islets, in response to fuel- and nonfuel secretagogues, was in no instance significantly different between wild-type and HSL null mice. The lacking impact of HSL deficiency on insulin secretion may be attributed to the failure of insulin secretagogues to stimulate lipolysis. Consequently, a regulatory function of lipid mobilization in insulin secretion in the mouse appears unlikely.
机译:脂质被认为是胰岛素分泌中的偶联因子。激素敏感性脂肪酶(HSL)在胰腺β细胞中表达,并可能通过动员储存的甘油三酸酯来调节胰岛素分泌。在这里,我们检查了HSL缺乏对小鼠胰岛燃料代谢和胰岛素分泌的影响。 HSL的缺乏导致中性胆固醇酯水解酶活性的丧失,而甘油二酸酯脂酶活性保持完整。尽管葡萄糖刺激了大鼠胰岛的脂解,但无论基因型如何,增加或不添加cAMP的葡萄糖升高均不能增加小鼠胰岛的脂解作用,这可以通过从胰岛中释放甘油来表明。在HSL空胰岛中,以总酰基甘油酯含量测定的脂质存储未发生变化,脂肪酸或葡萄糖的氧化也没有变化。 Ca(2+)的细胞内上升由葡萄糖触发及其随后的振荡在HSL空胰岛中不受影响。因此,在野生型和HSL无效小鼠之间,在对胰岛的静态培养中,响应于燃料和非燃料促分泌剂的胰岛素分泌在任何情况下都没有显着差异。 HSL缺乏对胰岛素分泌的影响不足可能归因于胰岛素促分泌素未能刺激脂解。因此,在小鼠中胰岛素分泌中脂质动员的调节功能似乎不太可能。

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