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首页> 外文期刊>The journal of clinical investigation >SORLA facilitates insulin receptor signaling in adipocytes and exacerbates obesity
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SORLA facilitates insulin receptor signaling in adipocytes and exacerbates obesity

机译:SORLA促进脂肪细胞中的胰岛素受体信号传导并加剧肥胖

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In humans, genetic variation of sortilin-related receptor, L(DLR class) A repeats containing ( SORL1 ), which encodes the intracellular sorting receptor SORLA, is a major genetic risk factor for familial and sporadic forms of Alzheimer’s disease. Recent GWAS analysis has also associated SORL1 with obesity in humans and in mouse models, suggesting that this receptor may play a role in regulating metabolism. Here, using mouse models with genetic loss or tissue-specific overexpression of SORLA as well as data from obese human subjects, we observed a gene-dosage effect that links SORLA expression to obesity and glucose tolerance. Overexpression of human SORLA in murine adipose tissue blocked hydrolysis of triacylglycerides and caused excessive adiposity. In contrast, Sorl1 gene inactivation in mice accelerated breakdown of triacylglycerides in adipocytes and protected animals from diet-induced obesity. We then identified the underlying molecular mechanism whereby SORLA promotes insulin-induced suppression of lipolysis in adipocytes. Specifically, we determined that SORLA acts as a sorting factor for the insulin receptor (IR) that redirects internalized receptor molecules from endosomes to the plasma membrane, thereby enhancing IR surface expression and strengthening insulin signal reception in target cells. Our findings provide a molecular mechanism for the association of SORL1 with human obesity and confirm a genetic link between neurodegeneration and metabolism that converges on the receptor SORLA.
机译:在人类中,分选蛋白相关受体L(DLR类)A重复序列(SORL1)的遗传变异是编码细胞内分选受体SORLA的遗传变异,是阿尔茨海默氏病家族和散发形式的主要遗传危险因素。最近的GWAS分析也将SORL1与人类和小鼠模型中的肥胖症相关联,表明该受体可能在调节代谢中发挥作用。在这里,使用具有SORLA遗传缺失或组织特异性过表达的小鼠模型,以及来自肥胖人类受试者的数据,我们观察到了将SORLA表达与肥胖和葡萄糖耐量相关联的基因剂量效应。人SORLA在鼠类脂肪组织中的过表达会阻止甘油三酸酯的水解,并导致肥胖。相比之下,小鼠中的Sorl1基因失活会加速脂肪细胞中三酰甘油酯的分解,并保护动物免受饮食诱导的肥胖。然后,我们确定了SORLA促进胰岛素诱导的脂肪细胞脂解抑制的潜在分子机制。具体来说,我们确定SORLA充当胰岛素受体(IR)的分类因子,该受体将内在化的受体分子从内体重定向到质膜,从而增强IR表面表达并增强靶细胞中的胰岛素信号接收。我们的发现提供了SORL1与人类肥胖症相关的分子机制,并证实了神经变性和代谢之间的遗传联系会聚在受体SORLA上。

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