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通过敲低果蝇PDP1γ和哺乳动物肝白血病因子降低细胞脂质含量

Reduction of Cellular Lipid Content by a Knockdown of Drosophila PDP1 γ and Mammalian Hepatic Leukemia Factor.

作者信息

Dzitoyeva Svetlana, Manev Hari

机构信息

Department of Psychiatry, Psychiatric Institute, University of Illinois at Chicago, Chicago, IL 60612, USA.

出版信息

J Lipids. 2013;2013:297932. doi: 10.1155/2013/297932. Epub 2013 Aug 22.

Abstract

In exploring the utility of double-stranded RNA (dsRNA) injections for silencing the PAR-domain protein 1 (Pdp1) gene in adult Drosophila, we noticed a dramatic loss of fat tissue lipids. To verify that our RNAi approach produced the expected Pdp1 knockdown, the abdominal fat tissues sections were stained with PDP1 antibodies. PDP1 protein immunostaining was absent in flies injected with dsRNA targeting a sequence common to all known Pdp1 isoforms. Subsequent experiments revealed that lipid staining is reduced in flies injected with dsRNA against Pdp1 γ (fat body specific) and not against Pdp1 ε (predominantly involved in circadian mechanisms). Drosophila PDP1 γ protein shows a high homology to mammalian thyrotroph embryonic factor (TEF), albumin D site-binding protein (DBP), and hepatic leukemia factor (HLF) transcription factors. In an in vitro model of drug- (olanzapine-) induced adiposity in mouse 3T3-L1 cells, the mRNA content of HLF but not TEF and DBP was increased by the drug treatment. A knockdown of the HLF mRNA by transfecting the cultures with HLF dsRNA significantly reduced their lipid content. Furthermore, the HLF RNAi prevented olanzapine from increasing the cell lipid content. These results suggest that the PDP1/HLF system may play a role in physiological and drug-influenced lipid regulation.

摘要

在探索双链RNA(dsRNA)注射对成年果蝇中PAR结构域蛋白1(Pdp1)基因进行沉默的效用时,我们注意到脂肪组织脂质显著减少。为了验证我们的RNA干扰方法产生了预期的Pdp1基因敲低效果,用PDP1抗体对腹部脂肪组织切片进行染色。在注射了靶向所有已知Pdp1异构体共有的序列的dsRNA的果蝇中,未出现PDP1蛋白免疫染色。后续实验表明,注射针对Pdp1γ(脂肪体特异性)而非Pdp1ε(主要参与昼夜节律机制)的dsRNA的果蝇中,脂质染色减少。果蝇PDP1γ蛋白与哺乳动物促甲状腺激素胚胎因子(TEF)、白蛋白D位点结合蛋白(DBP)和肝白血病因子(HLF)转录因子具有高度同源性。在小鼠3T3-L1细胞中药物(奥氮平)诱导肥胖的体外模型中,药物处理使HLF的mRNA含量增加,但TEF和DBP的mRNA含量未增加。用HLF dsRNA转染培养物使HLF mRNA敲低,显著降低了它们的脂质含量。此外,HLF RNA干扰可阻止奥氮平增加细胞脂质含量。这些结果表明,PDP1/HLF系统可能在生理和药物影响的脂质调节中发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5f1c/3766575/8d3406691dab/JL2013-297932.001.jpg

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