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核内固醇调节元件结合蛋白-1a、-1c和-2对生脂和胆固醇生成基因不同靶启动子的转录活性。

Transcriptional activities of nuclear SREBP-1a, -1c, and -2 to different target promoters of lipogenic and cholesterogenic genes.

作者信息

Amemiya-Kudo Michiyo, Shimano Hitoshi, Hasty Alyssa H, Yahagi Naoya, Yoshikawa Tomohiro, Matsuzaka Takashi, Okazaki Hiroaki, Tamura Yoshiaki, Iizuka Yoko, Ohashi Ken, Osuga Jun-ichi, Harada Kenji, Gotoda Takanari, Sato Ryuichiro, Kimura Satoshi, Ishibashi Shun, Yamada Nobuhiro

机构信息

Department of Metabolic Diseases, Graduate School of Agricultural and Life Sciences, University of Tokyo, Tokyo, Japan.

出版信息

J Lipid Res. 2002 Aug;43(8):1220-35.

Abstract

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.

摘要

近期对固醇调节元件结合蛋白(SREBP)家族体内作用的研究表明,SREBP-2对胆固醇生成基因的表达更具特异性,而SREBP-1则靶向脂肪生成基因。为了确定这种差异调节所涉及的分子机制,在HepG2细胞中进行了荧光素酶报告基因检测,以比较核SREBP-1a、-1c和-2对一系列含有固醇调节元件(SRE)、SRE样或E盒序列的SREBP靶启动子的转录活性。结果首先表明,其启动子中含有经典SRE的胆固醇生成基因被SREBP-1a和SREBP-2强烈且有效地激活,但不被SREBP-1c激活。其次,含有E盒的报告基因被SREBP-1a和-1c激活的效率要低得多,尽管SREBP-2能够与E盒结合,但其对该报告基因无激活作用。第三,含有SRE变体(SRE样序列)的脂肪生成酶启动子被SREBP-1a强烈激活,而被SREBP-1c和-2同等程度地微弱激活。最后,将核SREBPs碱性螺旋-环-螺旋(bHLH)部分中的独特酪氨酸残基替换为精氨酸(在所有其他bHLH蛋白中发现的保守残基),消除了所有SREBPs对SRE的转录活性,相反,却导致SREBP-1对E盒的活性显著增加,而SREBP-2对E盒的活性未增加。这些数据证明了核SREBP-1和-2对不同靶DNA具有不同的特异性和亲和力,这分别解释了SREBP-1和-2对胆固醇生成酶和脂肪生成酶在体内差异调节背后的部分机制。

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