DePianto Daryle J, Blankenship Tom N, Hess John F, FitzGerald Paul G
Department of Cell Biology Human Anatomy, School of Medicine, University of California, Davis 95616, USA.
Mol Vis. 2003 Jun 30;9:288-94.
To examine the role of the c-Maf transcription factor in the regulation of non-crystallin lens fiber cell specific gene expression.
Expression of lens fiber cell genes in c-Maf null mice was analyzed by immunohistochemical and RT-PCR methods. In addition, the effect of c-Maf on fiber cell gene promoter fragments was examined in co-transfection experiments.
Examination of protein expression in c-Maf homozygous mutant mice revealed undetectable levels of CP49, CP115 and MIP protein. mRNA transcripts for these non-crystallin genes were observed at reduced levels in subsequent RT-PCR experiments. The co-transfection of a c-Maf expression construct with reporter constructs containing the proximal promoters of the CP49 and CP115 genes, the structural components of the lens fiber cell beaded filament, did not result in activation of reporter gene expression, as was observed with a crystallin promoter.
While c-Maf has been shown to play a critical role in lens specific expression of the numerous crystallin genes, it does not appear to regulate some non-crystallin fiber cell genes in the same manner. In contrast to most crystallin genes, detectable levels of CP49, CP115, and MIP transcripts are achieved in the absence of c-Maf. In co-transfection experiments, the CP49 and CP115 proximal promoter sequences were not activated by c-Maf. This suggests that increases in transcription of non-crystallin lens fiber cell genes can be enacted in a c-Maf independent fashion.
研究c-Maf转录因子在非晶状体蛋白晶状体纤维细胞特异性基因表达调控中的作用。
采用免疫组织化学和RT-PCR方法分析c-Maf基因敲除小鼠晶状体纤维细胞基因的表达。此外,在共转染实验中检测c-Maf对纤维细胞基因启动子片段的影响。
对c-Maf纯合突变小鼠的蛋白质表达检测显示,未检测到CP49、CP115和MIP蛋白水平。在随后的RT-PCR实验中,观察到这些非晶状体蛋白基因的mRNA转录水平降低。将c-Maf表达构建体与含有CP49和CP115基因近端启动子的报告构建体(晶状体纤维细胞串珠状细丝的结构成分)共转染,并未导致报告基因表达激活,而晶状体蛋白启动子则能激活报告基因表达。
虽然已证明c-Maf在众多晶状体蛋白基因的晶状体特异性表达中起关键作用,但它似乎并非以同样的方式调控某些非晶状体蛋白纤维细胞基因。与大多数晶状体蛋白基因不同,在没有c-Maf的情况下可检测到CP49、CP115和MIP转录本水平。在共转染实验中,c-Maf未激活CP49和CP115近端启动子序列。这表明非晶状体蛋白晶状体纤维细胞基因转录的增加可以通过不依赖c-Maf的方式实现。