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转基因小鼠中脂肪酸合酶启动子的营养和胰岛素调节需要两个5'-区域。

Two 5'-regions are required for nutritional and insulin regulation of the fatty-acid synthase promoter in transgenic mice.

作者信息

Moon Y S, Latasa M J, Kim K H, Wang D, Sul H S

机构信息

Department of Nutritional Sciences, University of California, Berkeley, California 94720, USA.

出版信息

J Biol Chem. 2000 Apr 7;275(14):10121-7. doi: 10.1074/jbc.275.14.10121.

Abstract

We previously reported that 2.1 kilobase pairs of the 5'-flanking sequence are sufficient for tissue-specific and hormonal/metabolic regulation of the fatty-acid synthase (FAS) gene in transgenic mice. We also demonstrated that the -65 E-box is required for insulin regulation of the FAS promoter using 3T3-L1 adipocytes in culture. To further define sequences required for FAS gene expression, we generated transgenic mice carrying from -644, -444, -278, and -131 to +67 base pairs of the rat FAS 5'-flanking sequence fused to the chloramphenicol acetyltransferase (CAT) reporter gene. Similar to the expression observed with -2100-FAS-CAT transgenic mice, transgenic mice harboring -644-FAS-CAT and -444-FAS-CAT expressed high levels of CAT mRNA only in lipogenic tissues (liver and adipose tissue) in a manner identical to the endogenous FAS mRNA. In contrast, -278-FAS-CAT and -131-FAS-CAT transgenic mice did not show appreciable CAT expression in any of the tissues examined. When previously fasted mice were refed a high carbohydrate, fat-free diet, CAT mRNA expression in transgenic mice harboring -644-FAS-CAT and -444-FAS-CAT was induced dramatically in liver and adipose tissue. The induction was virtually identical to that observed in -2100-FAS-CAT transgenic mice and to the endogenous FAS mRNA. In contrast, -278-FAS-CAT transgenic mice showed induction by feeding, but at a much lower magnitude in both liver and adipose tissue. The -131-FAS-CAT transgenic mice did not show any CAT expression either when fasted or refed a high carbohydrate diet. To study further the effect of insulin, we made these transgenic mice insulin-deficient by streptozotocin treatment. Insulin administration to the streptozotocin-diabetic mice increased CAT mRNA levels driven by the -644 FAS and -444 FAS promoters in liver and adipose tissue, paralleling the endogenous FAS mRNA levels. In the case of -278-FAS-CAT, the induction observed was at a much lower magnitude, and deletion to -131 base pairs did not show any increase in CAT expression by insulin. This study demonstrates that the sequence requirement for FAS gene regulation employing an in vitro culture system does not reflect the in vivo situation and that two 5'-flanking regions are required for proper nutritional and insulin regulation of the FAS gene. Cotransfection of the upstream stimulatory factor and various FAS promoter-luciferase constructs as well as in vitro binding studies suggest a function for the upstream stimulatory factor at both the -65 and -332 E-box sequences.

摘要

我们先前报道,在转基因小鼠中,脂肪酸合酶(FAS)基因5'-侧翼序列的2.1千碱基对足以实现组织特异性以及激素/代谢调控。我们还证明,利用培养的3T3-L1脂肪细胞,FAS启动子的胰岛素调控需要-65 E-盒。为了进一步确定FAS基因表达所需的序列,我们构建了转基因小鼠,其携带大鼠FAS 5'-侧翼序列从-644、-444、-278和-131至+67碱基对,并与氯霉素乙酰转移酶(CAT)报告基因融合。与-2100-FAS-CAT转基因小鼠所观察到的表达情况相似,携带-644-FAS-CAT和-444-FAS-CAT的转基因小鼠仅在脂肪生成组织(肝脏和脂肪组织)中以与内源性FAS mRNA相同的方式高水平表达CAT mRNA。相比之下,-278-FAS-CAT和-131-FAS-CAT转基因小鼠在所检测的任何组织中均未显示出明显的CAT表达。当先前禁食的小鼠重新喂食高碳水化合物、无脂肪饮食时,携带-644-FAS-CAT和-444-FAS-CAT的转基因小鼠肝脏和脂肪组织中的CAT mRNA表达显著诱导。该诱导与在-2100-FAS-CAT转基因小鼠中观察到的以及内源性FAS mRNA的诱导几乎相同。相比之下,-278-FAS-CAT转基因小鼠喂食后显示出诱导,但在肝脏和脂肪组织中的诱导程度要低得多。-131-FAS-CAT转基因小鼠在禁食或重新喂食高碳水化合物饮食时均未显示出任何CAT表达。为了进一步研究胰岛素的作用,我们通过链脲佐菌素处理使这些转基因小鼠胰岛素缺乏。对链脲佐菌素诱导的糖尿病小鼠给予胰岛素可增加肝脏和脂肪组织中由-644 FAS和-444 FAS启动子驱动的CAT mRNA水平,与内源性FAS mRNA水平平行。对于-278-FAS-CAT,观察到的诱导程度要低得多,而缺失至-131碱基对时,胰岛素未显示出CAT表达的任何增加。本研究表明,采用体外培养系统对FAS基因调控的序列要求并不能反映体内情况,并且FAS基因的正常营养和胰岛素调控需要两个5'-侧翼区域。上游刺激因子与各种FAS启动子-荧光素酶构建体的共转染以及体外结合研究表明,上游刺激因子在-65和-332 E-盒序列处均发挥作用。

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