Liu M L, Olson A L, Edgington N P, Moye-Rowley W S, Pessin J E
Department of Physiology and Biophysics, University of Iowa, Iowa City 52243.
J Biol Chem. 1994 Nov 11;269(45):28514-21.
We have cloned and characterized the rat GLUT4 gene in order to identify the cis-DNA elements responsible for tissue-specific GLUT4 expression. In this study, a variety of luciferase reporter gene constructs were transiently transfected into C2C12 myoblasts and myotubes as a model for skeletal muscle differentiation. These data identified a 103-base pair fragment, located from -522 to -420 relative to the transcription initiation site, that was sufficient to account for GLUT4 C2C12 myotube-specific expression. This fragment was operationally defined as an enhancer since it conferred myotube-specific expression in the context of both the minimal native GLUT4 or the heterologous thymidine kinase promoters in an orientation-independent manner. Further, mutagenesis of this fragment demonstrated that a sequence analogous to the muscle creatine kinase myocyte enhancer factor 2 (MEF2) binding site (-466 and -457) was required for transcriptional activation. Electrophoretic mobility gel shift assays demonstrated specific binding activity to the GLUT4 MEF2 sequences which directly correlated with functional expression. Although this element was capable of directing myotube-specific expression when cloned as multiple copies into luciferase reporter gene constructs, the MEF2 sequence alone was insufficient to enhance GLUT4 expression. These data demonstrated that GLUT4 muscle-specific expression is conferred by a 103-base pair DNA sequence located between -522 and -420 of rat GLUT4 gene. This region encompasses a MEF2 binding site which was necessary, but not sufficient, for transcriptional activation.
为了鉴定负责组织特异性GLUT4表达的顺式DNA元件,我们克隆并表征了大鼠GLUT4基因。在本研究中,将多种荧光素酶报告基因构建体瞬时转染到C2C12成肌细胞和肌管中,作为骨骼肌分化的模型。这些数据鉴定出一个103个碱基对的片段,相对于转录起始位点位于-522至-420,该片段足以解释GLUT4在C2C12肌管中的特异性表达。该片段在操作上被定义为增强子,因为它以方向独立的方式在最小天然GLUT4或异源胸苷激酶启动子的背景下赋予肌管特异性表达。此外,该片段的诱变表明,与肌肉肌酸激酶肌细胞增强因子2(MEF2)结合位点(-466和-457)类似的序列是转录激活所必需的。电泳迁移率凝胶迁移试验证明了与GLUT4 MEF2序列的特异性结合活性,这与功能表达直接相关。虽然当作为多个拷贝克隆到荧光素酶报告基因构建体中时,该元件能够指导肌管特异性表达,但单独的MEF2序列不足以增强GLUT4表达。这些数据表明,大鼠GLUT4基因-522至-420之间的103个碱基对DNA序列赋予了GLUT4肌肉特异性表达。该区域包含一个MEF2结合位点,这是转录激活所必需的,但不是充分的。