共查询到20条相似文献,搜索用时 15 毫秒
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Le Lay S Lefrère I Trautwein C Dugail I Krief S 《The Journal of biological chemistry》2002,277(38):35625-35634
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Deng X Yellaturu C Cagen L Wilcox HG Park EA Raghow R Elam MB 《The Journal of biological chemistry》2007,282(24):17517-17529
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AMPK phosphorylates and inhibits SREBP activity to attenuate hepatic steatosis and atherosclerosis in diet-induced insulin-resistant mice 总被引:2,自引:0,他引:2
Li Y Xu S Mihaylova MM Zheng B Hou X Jiang B Park O Luo Z Lefai E Shyy JY Gao B Wierzbicki M Verbeuren TJ Shaw RJ Cohen RA Zang M 《Cell metabolism》2011,13(4):376-388
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为研究过氧化物酶体增殖物激活受体γ辅激活因子1β(PGC-1β)与SREBP-1c在猪前体脂肪细胞分化过程中的表达规律及其相互作用,分析二者功能上的联系,采用Western 印迹及细胞免疫荧光技术检测PGC-1β与SREBP-1c在猪脂肪细胞分化过程中的表达,shRNA干扰和免疫共沉淀技术分别探讨了PGC-1β对SREBP-1c的调节作用及2种蛋白质在体内的结合活性.结果显示,PGC-1β与SREBP-1c 蛋白的表达均随猪脂肪细胞分化逐渐增加,且在分化细胞的核和胞浆中均有分布. 干扰PGC-1β显著下调了SREBP-1c和脂肪细胞分化标记基因C/EBPα的表达(P<0.05),同时降低了细胞内甘油三酯的积累.免疫共沉淀证明,PGC-1β与SREBP-1c蛋白在猪脂肪细胞分化过程中存在结合作用. 以上结果表明,PGC-1β能够促进猪脂肪细胞分化并对SREBP-1c有调节和结合作用,推测二者的结合可能与其对脂肪细胞的分化调节机制相关,将对PGC-1β调控脂肪细胞分化的功能和机理研究提供新途径. 相似文献
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Identification of liver X receptor-retinoid X receptor as an activator of the sterol regulatory element-binding protein 1c gene promoter 总被引:18,自引:0,他引:18
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Yoshikawa T Shimano H Amemiya-Kudo M Yahagi N Hasty AH Matsuzaka T Okazaki H Tamura Y Iizuka Y Ohashi K Osuga J Harada K Gotoda T Kimura S Ishibashi S Yamada N 《Molecular and cellular biology》2001,21(9):2991-3000
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SREBP transcription factors: master regulators of lipid homeostasis 总被引:41,自引:0,他引:41
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Transcriptional activities of nuclear SREBP-1a, -1c,and -2 to different target promoters of lipogenic and cholesterogenic genes 总被引:5,自引:0,他引:5
Amemiya-Kudo M Shimano H Hasty AH Yahagi N Yoshikawa T Matsuzaka T Okazaki H Tamura Y Iizuka Y Ohashi K Osuga J Harada K Gotoda T Sato R Kimura S Ishibashi S Yamada N 《Journal of lipid research》2002,43(8):1220-1235
Recent studies on the in vivo roles of the sterol regulatory element binding protein (SREBP) family indicate that SREBP-2 is more specific to cholesterogenic gene expression whereas SREBP-1 targets lipogenic genes. To define the molecular mechanism involved in this differential regulation, luciferase-reporter gene assays were performed in HepG2 cells to compare the transactivities of nuclear SREBP-1a, -1c, and -2 on a battery of SREBP-target promoters containing sterol regulatory element (SRE), SRE-like, or E-box sequences. The results show first that cholesterogenic genes containing classic SREs in their promoters are strongly and efficiently activated by both SREBP-1a and SREBP-2, but not by SREBP-1c. Second, an E-box containing reporter gene is much less efficiently activated by SREBP-1a and -1c, and SREBP-2 was inactive in spite of its ability to bind to the E-box. Third, promoters of lipogenic enzymes containing variations of SRE (SRE-like sequences) are strongly activated by SREBP-1a, and only modestly and equally by both SREBP-1c and -2. Finally, substitution of the unique tyrosine residue within the basic helix-loop-helix (bHLH) portion of nuclear SREBPs with arginine, the conserved residue found in all other bHLH proteins, abolishes the transactivity of all SREBPs for SRE, and conversely results in markedly increased activity of SREBP-1 but not activity of SREBP-2 for E-boxes. These data demonstrate the different specificity and affinity of nuclear SREBP-1 and -2 for different target DNAs, explaining a part of the mechanism behind the differential in vivo regulation of cholesterogenic and lipogenic enzymes by SREBP-1 and -2, respectively. 相似文献
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Ping Li Mengmeng Yu Chengjian Zhou Hao Qi Xuepeng Wen Xiaoming Hou Meng Li Xuejun Gao 《Journal of cellular physiology》2019,234(1):537-549
The intracellular fatty acid-binding proteins (FABPs) are a well-conserved family that function as lipid chaperones. Ongoing studies are focused on identification of the mechanistic complexity and vast biological diversity of different isoforms of FABPs. However, the molecular mechanism of FABP5 in the regulation of milk fat synthesis in the mammary gland of dairy cows is still largely unknown. Here, we report that FABP5 acts as a critical regulator of terol response element-binding protein-1c (SREBP-1c) gene expression induced by methionine (Met) and estrogen (E2) in bovine mammary epithelial cells (BMECs). We observed that the expression of FABP5 was markedly higher in dairy cow mammary tissue during the lactating period than the puberty period and the dry period. FABP5 is located in the cytoplasm, and Met and E2 significantly increase the protein levels of FABP5 in BMECs. Using gene function study approaches, we revealed that FABP5 positively regulates SREBP-1c gene expression and promotes milk fat synthesis. We confirmed that FABP5 is required for Met- and E2-induced SREBP-1c gene expression and milk fat synthesis. We further uncovered that fatty acids are needed for FABP5-mediated SREBP-1c gene expression. Thus, our study demonstrates that FABP5 is a critical regulator of Met- and E2-induced SREBP-1c gene expression leading to milk fat synthesis. 相似文献