Gupta M P, Gupta M, Dizon E, Zak R
Department of Medicine, University of Chicago, IL 60637, USA.
Mol Cell Biochem. 1996;157(1-2):117-24. doi: 10.1007/BF00227889.
Several neuroendocrine factors have been shown to influence the muscle phenotype. Various physiological reports have suggested the role of adrenergic nervous system for cardiac myosin heavy chain (MHC) expression. We have used cultured fetal rat heart myocytes to investigate the role of cAMP on the alpha- and beta-MHC gene expression. In low density cultures, addition of 1 mM 8 Br cAMP resulted in up regulation of alpha-MHC and down regulation of beta-MHC mRNA. This antithetic effect of cAMP depends on the basal expression of both expression of both MHC transcripts. In transient transfection analysis employing a series of alpha-MHC gene promoter/reporter constructs, we identified a 13 bp E-box M-CAT hybrid motif (EM element) which conferred a basal muscle specific and cAMP-inducible expression of the alpha-MHC gene. Data obtained from the mobility gel-shift analysis indicated that one of the factor(s) binding to the EM element is related to troponin T M-CAT binding factor (TEF-1). To test whether the protein binding to this sequence could be a substrate for cAMP-dependent phosphorylation, the cardiac nuclear proteins were preincubated in a kinase reaction buffer either with a catalytic subunit of PKA (CatPKA) or with cAMP, and binding activity of proteins to the EM element was evaluated by mobility gel shift assay. In a concentration dependent manner, a twofold increase in the intensity of the retarded band was observed. Furthermore, at 100 units of CatPKA, an additional band of faster mobility was observed which was not present either when phosphorylated nuclear extract was incubated with alkaline phosphatase or when ATP was absent in kinase reaction buffer. These results strongly suggest that factor(s) binding to the EM element is a substrate for cAMP dependent phosphorylation.
几种神经内分泌因子已被证明会影响肌肉表型。各种生理学报告表明,肾上腺素能神经系统在心肌肌球蛋白重链(MHC)表达中发挥作用。我们利用培养的胎鼠心脏心肌细胞来研究cAMP对α-MHC和β-MHC基因表达的作用。在低密度培养中,添加1 mM 8-溴-cAMP导致α-MHC上调和β-MHC mRNA下调。cAMP的这种相反作用取决于两种MHC转录本的基础表达。在使用一系列α-MHC基因启动子/报告基因构建体的瞬时转染分析中,我们鉴定出一个13 bp的E-box M-CAT杂交基序(EM元件),它赋予了α-MHC基因基础的肌肉特异性和cAMP诱导性表达。从迁移率凝胶迁移分析获得的数据表明,与EM元件结合的因子之一与肌钙蛋白T M-CAT结合因子(TEF-1)有关。为了测试与该序列结合的蛋白质是否可能是cAMP依赖性磷酸化的底物,将心脏核蛋白在激酶反应缓冲液中与PKA催化亚基(CatPKA)或cAMP预孵育,并通过迁移率凝胶迁移分析评估蛋白质与EM元件的结合活性。以浓度依赖的方式,观察到滞后带强度增加了两倍。此外,在100单位的CatPKA时,观察到一条迁移速度更快的额外条带,当磷酸化的核提取物与碱性磷酸酶一起孵育或激酶反应缓冲液中不存在ATP时,该条带不存在。这些结果强烈表明,与EM元件结合的因子是cAMP依赖性磷酸化的底物。