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心肌细胞特异性增强子结合因子(MEF-2)在体外和体内调节α-心肌肌球蛋白重链基因的表达。

Myocyte-specific enhancer-binding factor (MEF-2) regulates alpha-cardiac myosin heavy chain gene expression in vitro and in vivo.

作者信息

Molkentin J D, Markham B E

机构信息

Department of Physiology, Medical College of Wisconsin, Milwaukee 53226.

出版信息

J Biol Chem. 1993 Sep 15;268(26):19512-20.

PMID:8366095
Abstract

A myocyte-specific enhancer-binding factor (MEF-2) DNA binding site was identified in the rat alpha-myosin heavy chain (MHC) gene adjacent to the E-box binding site for alpha-MHC binding factor-2 (BF-2). Mutation of the MEF-2 site, within the context of the full-length promoter, reduced activity by 85 and 80% in neonatal cardiomyocytes and the adult heart, respectively. Mutation of the BF-2 site reduced activity approximately 70% in both models. A MEF-2/BF-2 double mutant gave significantly less activity than the BF-2 mutant but not the MEF-2 mutant, suggesting the possibility that BF-2 and MEF-2 interact. Mutations in MEF-2, which decreased functional activity, also abolished MEF-2 DNA binding activity. MEF-2 DNA binding activity was present in the developing heart, reached a peak in the late fetal and early neonatal stages, and then declined to low levels in the adult heart. The adult levels were sufficient to support alpha-MHC gene expression. MEF-2 activity was increased 2-3-fold in the adult heart subjected to a pressure or volume overload. Two working models are proposed as possible explanations of the antithetic relationship between MEF-2 levels and alpha-MHC gene expression.

摘要

在大鼠α-肌球蛋白重链(MHC)基因中,紧邻α-MHC结合因子-2(BF-2)的E-box结合位点处,鉴定出一个肌细胞特异性增强子结合因子(MEF-2)DNA结合位点。在全长启动子的背景下,MEF-2位点的突变在新生心肌细胞和成年心脏中分别使活性降低了85%和80%。在两种模型中,BF-2位点的突变使活性降低了约70%。MEF-2/BF-2双突变体的活性明显低于BF-2突变体,但不低于MEF-2突变体,这表明BF-2和MEF-2可能相互作用。MEF-2中的突变降低了功能活性,同时也消除了MEF-2的DNA结合活性。MEF-2的DNA结合活性在发育中的心脏中存在,在胎儿晚期和新生儿早期达到峰值,然后在成年心脏中降至低水平。成年心脏中的水平足以支持α-MHC基因的表达。在压力或容量过载的成年心脏中,MEF-2活性增加了2至3倍。提出了两种工作模型,作为对MEF-2水平与α-MHC基因表达之间相反关系的可能解释。

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