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首页> 外文期刊>Journal of Lipid Research >Secretion of fatty acid binding protein aP2 from adipocytes through a nonclassical pathway in response to adipocyte lipase activity
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Secretion of fatty acid binding protein aP2 from adipocytes through a nonclassical pathway in response to adipocyte lipase activity

机译:响应非脂肪细胞脂肪酶活性,通过非经典途径从脂肪细胞分泌脂肪酸结合蛋白aP2

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Adipocyte fatty acid binding protein 4, aP2, contributes to the pathogenesis of several common diseases including type 2 diabetes, atherosclerosis, fatty liver disease, asthma, and cancer. Although the biological functions of aP2 have classically been attributed to its intracellular action, recent studies demonstrated that aP2 acts as an adipokine to regulate systemic metabolism. However, the mechanism and regulation of aP2 secretion remain unknown. Here, we demonstrate a specific role for lipase activity in aP2 secretion from adipocytes in vitro and ex vivo. Our results show that chemical inhibition of lipase activity, genetic deficiency of adipose triglyceride lipase and, to a lesser extent, hormone-sensitive lipase blocked aP2 secretion from adipocytes. Increased lipolysis and lipid availability also contributed to aP2 release as determined in perilipin1-deficient adipose tissue explants ex vivo and upon treatment with lipids in vivo and in vitro. In addition, we identify a nonclassical route for aP2 secretion in exosome-like vesicles and show that aP2 is recruited to this pathway upon stimulation of lipolysis. Given the effect of circulating aP2 on glucose metabolism, these data support that targeting aP2 or the lipolysis-dependent secretory pathway may present novel mechanistic and translational opportunities in metabolic disease.
机译:脂肪细胞脂肪酸结合蛋白4,aP2,促成几种常见疾病的发病机理,包括2型糖尿病,动脉粥样硬化,脂肪肝,哮喘和癌症。尽管aP2的生物学功能经典地归因于其细胞内作用,但最近的研究表明aP2充当了调节系统代谢的脂肪因子。但是,aP2分泌的机制和调控仍然未知。在这里,我们证明了脂肪酶活性在体外和离体从脂肪细胞分泌aP2的特定作用。我们的结果表明,对脂肪酶活性的化学抑制,脂肪族甘油三酸酯脂肪酶的遗传缺陷以及激素敏感性脂肪酶(在较小程度上)阻止了脂肪细胞分泌aP2。在体内和体外用脂质治疗后,在缺乏periplipin1的脂肪组织外植体中测定,增加的脂解作用和脂质可利用性也有助于aP2的释放。另外,我们确定了exosome样囊泡中aP2分泌的非经典途径,并表明刺激脂解后aP2被募集到该途径。考虑到循环aP2对葡萄糖代谢的影响,这些数据支持靶向aP2或脂解依赖性分泌途径可能在代谢疾病中提供新的机制和翻译机会。

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