Shen R A, Goswami S K, Mascareno E, Kumar A, Siddiqui M A
Department of Anatomy and Cell Biology, State University of New York Health Science Center, Brooklyn 11203-2098.
Mol Cell Biol. 1991 Mar;11(3):1676-85. doi: 10.1128/mcb.11.3.1676-1685.1991.
Physiological expression of the cardiac muscle myosin light-chain 2 (MLC-2) gene in chickens is restricted to cardiac muscle tissue only, at least during the late embryonic to adult stages of development. The mechanism by which cardiac MLC-2 gene expression is repressed in differentiated noncardiac muscle tissues is unknown. Using sequential 5'-deletion mutants of the cardiac MLC-2 promoter introduced into primary skeletal muscle cells in culture, we have demonstrated that a 89-bp region, designated the cardiac-specific sequence (CSS), is essential for repression of cardiac MLC-2 expression in skeletal muscle. Removal of the CSS sequence alone allows transcription in skeletal muscle cells without affecting the transcriptional activity of the promoter in cardiac muscle cells. DNase I footprinting and gel shift assays indicate that protein binding to sequences in the CSS domain occurs readily in nuclear extracts obtained from skeletal muscle but not in extracts isolated under identical conditions from cardiac muscle. Thus, it appears that a negative regulatory mechanism accounts for the lack of expression of the cardiac MLC-2 gene in skeletal muscle and that the CSS element and its binding proteins are important functional components of the regulatory apparatus which ensures the developmental program for cardiac tissue-specific gene expression.
心肌肌球蛋白轻链2(MLC-2)基因在鸡体内的生理表达仅限于心肌组织,至少在胚胎后期到成年发育阶段是这样。在分化的非心肌组织中,心脏MLC-2基因表达被抑制的机制尚不清楚。通过将心脏MLC-2启动子的连续5'-缺失突变体导入培养的原代骨骼肌细胞中,我们已经证明,一个89bp的区域,称为心脏特异性序列(CSS),对于在骨骼肌中抑制心脏MLC-2表达至关重要。单独去除CSS序列可使骨骼肌细胞进行转录,而不影响启动子在心肌细胞中的转录活性。DNase I足迹法和凝胶迁移试验表明,与CSS结构域中的序列结合的蛋白质在从骨骼肌获得的核提取物中很容易出现,但在相同条件下从心肌分离的提取物中则不会出现。因此,似乎一种负调控机制导致了心脏MLC-2基因在骨骼肌中缺乏表达,并且CSS元件及其结合蛋白是确保心脏组织特异性基因表达发育程序的调节装置的重要功能组件。