Dijk Wieneke, Mattijssen Frits, de la Rosa Rodriguez Montserrat, Loza Valdes Angel, Loft Anne, Mandrup Susanne, Kalkhoven Eric, Qi Ling, Borst Jan Willem, Kersten Sander
Nutrition, Metabolism, and Genomics Group, Division of Human Nutrition, Wageningen University, 6708 WE Wageningen, The Netherlands.
Department of Biochemistry and Molecular Biology, University of Southern Denmark, DK-5230 Odense, Denmark.
Endocrinology. 2017 May 1;158(5):1231-1251. doi: 10.1210/en.2016-1809.
Triglycerides are stored in specialized organelles called lipid droplets. Numerous proteins have been shown to be physically associated with lipid droplets and govern their function. Previously, the protein hypoxia-inducible lipid droplet-associated (HILPDA) was localized to lipid droplets and was suggested to inhibit triglyceride lipolysis in hepatocytes. We confirm the partial localization of HILPDA to lipid droplets and show that HILPDA is highly abundant in adipose tissue, where its expression is controlled by the peroxisome proliferator-activated receptor γ and by β-adrenergic stimulation. Levels of HILPDA markedly increased during 3T3-L1 adipocyte differentiation. Nevertheless, silencing of Hilpda using small interfering RNA or overexpression of Hilpda using adenovirus did not show a clear impact on 3T3-L1 adipogenesis. Following β-adrenergic stimulation, the silencing of Hilpda in adipocytes did not significantly alter the release of nonesterified fatty acids (NEFA) and glycerol. By contrast, adenoviral-mediated overexpression of Hilpda modestly attenuated the release of NEFA from adipocytes following β-adrenergic stimulation. In mice, adipocyte-specific inactivation of Hilpda had no effect on plasma levels of NEFA and glycerol after fasting, cold exposure, or pharmacological β-adrenergic stimulation. In addition, other relevant metabolic parameters were unchanged by adipocyte-specific inactivation of Hilpda. Taken together, we find that HILPDA is highly abundant in adipose tissue, where its levels are induced by peroxisome proliferator-activated receptor γ and β-adrenergic stimulation. In contrast to the reported inhibition of lipolysis by HILPDA in hepatocytes, our data do not support an important direct role of HILPDA in the regulation of lipolysis in adipocytes in vivo and in vitro.
甘油三酯储存于称为脂滴的特殊细胞器中。大量蛋白质已被证明与脂滴存在物理关联并调控其功能。此前,缺氧诱导脂滴相关蛋白(HILPDA)定位于脂滴,并被认为可抑制肝细胞中的甘油三酯脂解。我们证实了HILPDA部分定位于脂滴,并表明HILPDA在脂肪组织中高度丰富,其表达受过氧化物酶体增殖物激活受体γ和β-肾上腺素能刺激的控制。在3T3-L1脂肪细胞分化过程中,HILPDA水平显著升高。然而,使用小干扰RNA沉默Hilpda或使用腺病毒过表达Hilpda对3T3-L1脂肪生成并未显示出明显影响。β-肾上腺素能刺激后,在脂肪细胞中沉默Hilpda并未显著改变非酯化脂肪酸(NEFA)和甘油的释放。相比之下,腺病毒介导的Hilpda过表达适度减弱了β-肾上腺素能刺激后脂肪细胞中NEFA的释放。在小鼠中,脂肪细胞特异性失活Hilpda对禁食、冷暴露或药理学β-肾上腺素能刺激后的血浆NEFA和甘油水平没有影响。此外,Hilpda的脂肪细胞特异性失活并未改变其他相关代谢参数。综上所述,我们发现HILPDA在脂肪组织中高度丰富,其水平受过氧化物酶体增殖物激活受体γ和β-肾上腺素能刺激诱导。与报道的HILPDA在肝细胞中抑制脂解相反,我们的数据不支持HILPDA在体内和体外调节脂肪细胞脂解中起重要直接作用。