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E2A编码蛋白在胰岛素基因转录中的作用分析。

Analysis of the role of E2A-encoded proteins in insulin gene transcription.

作者信息

Sharma A, Henderson E, Gamer L, Zhuang Y, Stein R

机构信息

Department of Molecular Physiology and Biophysics, Vanderbilt University Medical Center, Nashville, Tennessee 37232, USA.

出版信息

Mol Endocrinol. 1997 Oct;11(11):1608-17. doi: 10.1210/mend.11.11.0004.

Abstract

Pancreatic beta-cell type-specific transcription of the insulin gene is mediated, in part, by factors in the basic helix-loop-helix (bHLH) family that act on a site within the insulin enhancer, termed the E1-box. Expression from this element is regulated by a heteromeric protein complex containing ubiquitous (i.e. the E2A- and HEB-encoded proteins) and islet-enriched members of the bHLH family. Recent studies indicate that the E2A- and HEB-encoded proteins contain a transactivation domain, termed AD2, that functions more efficiently in transfected beta-cell lines. In the present report, we extend this observation by demonstrating that expression of full-length E2A proteins (E47, E12, and E2/5) activates insulin E element-directed transcription in a beta-cell line-selective manner. Stimulation required functional interactions with other key insulin gene transcription factors, including its islet bHLH partner as well as those that act on the RIPE3b1 and RIPE3a2 elements of the insulin gene enhancer. The conserved AD2 domain in the E2A proteins was essential in this process. The effect of the E2A- and HEB-encoded proteins on insulin gene expression was also analyzed in mice lacking a functional E2A or HEB gene. There was no apparent difference in insulin production between wild type, heterozygote, and homozygous mutant E2A or HEB mice. These results suggest that neither the E2A- or HEB-encoded proteins are essential for insulin transcription and that one factor can substitute for the other to impart normal insulin E1 activator function in mutant animals.

摘要

胰岛素基因的胰腺β细胞类型特异性转录部分由碱性螺旋-环-螺旋(bHLH)家族中的因子介导,这些因子作用于胰岛素增强子内的一个位点,称为E1盒。该元件的表达受一种异源蛋白复合物调控,该复合物包含普遍存在的(即E2A和HEB编码的蛋白)以及bHLH家族中胰岛富集的成员。最近的研究表明,E2A和HEB编码的蛋白含有一个反式激活结构域,称为AD2,在转染的β细胞系中其功能更有效。在本报告中,我们通过证明全长E2A蛋白(E47、E12和E2/5)的表达以β细胞系选择性方式激活胰岛素E元件定向转录来扩展这一观察结果。刺激需要与其他关键的胰岛素基因转录因子进行功能相互作用,包括其胰岛bHLH伙伴以及作用于胰岛素基因增强子的RIPE3b1和RIPE3a2元件的那些因子。E2A蛋白中保守的AD2结构域在此过程中至关重要。我们还在缺乏功能性E2A或HEB基因的小鼠中分析了E2A和HEB编码的蛋白对胰岛素基因表达的影响。野生型、杂合子和纯合突变型E2A或HEB小鼠之间的胰岛素产生没有明显差异。这些结果表明,E2A或HEB编码的蛋白对于胰岛素转录都不是必需的,并且在突变动物中一个因子可以替代另一个因子来赋予正常的胰岛素E1激活功能。

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