Rajamanickam Chellam, Jeejabai Radhakrishnan
Center for Advanced Studies in Functional Genomics, Department of Biochemistry, Madurai Kamaraj University, India.
Methods Mol Med. 2005;112:251-60. doi: 10.1385/1-59259-879-x:251.
Earlier studies from our laboratory have demonstrated the appearance of a high Mr (182-kDa) phosphoprotein during early stages of development of cardiac hypertrophy in the sera of animals subjected to aortic constriction. Furthermore, it has been reported that the injection of purified 182-kDa protein into normal animals led to the development of hypertrophy, and the injection of polyclonal antibodies into the aorta constricted animals completely, abolished the development of hypertrophy, and downregulated the expression of the beta-Myosin heavy chain (MHC) gene. To identify the cis-acting regulatory element(s), which controls induction of the beta-MHC gene in acute pressure-overloaded cardiac hypertrophy induced by the 182-kDa protein, the beta-MHC promoter fragments of various lengths linked to the chloramphenicol acetyl transferase (CAT) reporter were injected into the left ventricular apex of adult rats, which underwent aortic constriction/182-kDa protein injection or were sham-operated. Activation of the beta-MHC gene by the 182-kDa protein was studied by a chimeric gene constructed by fusion of the 5' regulatory regions of the beta-MHC gene to bacterial CAT, demonstrating that at least 431 bp of the beta-MHC promoter (+103 to -328) with one E-box motif, along with upstream regulatory sequences such as the TATA box, N-Fe, C-rich, and M-CAT elements are required for beta-MHC gene expression in vivo during cardiac hypertrophy induced by the 182-kDa protein.
我们实验室早期的研究表明,在主动脉缩窄的动物血清中,心脏肥大发育早期会出现一种高分子量(182 kDa)的磷蛋白。此外,据报道,向正常动物注射纯化的182 kDa蛋白会导致肥大的发展,而向主动脉缩窄的动物注射多克隆抗体则完全消除了肥大的发展,并下调了β-肌球蛋白重链(MHC)基因的表达。为了确定在由182 kDa蛋白诱导的急性压力超负荷心脏肥大中控制β-MHC基因诱导的顺式作用调控元件,将与氯霉素乙酰转移酶(CAT)报告基因相连的各种长度的β-MHC启动子片段注射到成年大鼠的左心室尖,这些大鼠接受了主动脉缩窄/182 kDa蛋白注射或假手术。通过将β-MHC基因的5'调控区与细菌CAT融合构建的嵌合基因研究了182 kDa蛋白对β-MHC基因的激活,结果表明,β-MHC启动子至少431 bp(+103至-328)加上一个E-box基序,以及上游调控序列如TATA盒、N-Fe、富含C的元件和M-CAT元件,是182 kDa蛋白诱导心脏肥大期间β-MHC基因在体内表达所必需的。