Ogata Takehiro, Ueyama Tomomi, Isodono Koji, Tagawa Masashi, Takehara Naofumi, Kawashima Tsuneaki, Harada Koichiro, Takahashi Tomosaburo, Shioi Tetsuo, Matsubara Hiroaki, Oh Hidemasa
Department of Experimental Therapeutics, Translational Research Center, Kyoto University Hospital, Kyoto 606-8507, Japan.
Mol Cell Biol. 2008 May;28(10):3424-36. doi: 10.1128/MCB.02186-07. Epub 2008 Mar 10.
We identified a novel muscle-restricted putative coiled-coil protein, MURC, which is evolutionarily conserved from frog to human. MURC was localized to the cytoplasm with accumulation in the Z-line of the sarcomere in the murine adult heart. MURC mRNA expression in the heart increased during the developmental process from the embryonic stage to adulthood. In response to pressure overload, MURC mRNA expression increased in the hypertrophied heart. Using the yeast two-hybrid system, we identified the serum deprivation response (SDPR) protein, a phosphatidylserine-binding protein, as a MURC-binding protein. MURC induced activation of the RhoA/ROCK pathway, which modulated serum response factor-mediated atrial natriuretic peptide (ANP) expression and myofibrillar organization. SDPR augmented MURC-induced transactivation of the ANP promoter in cardiomyocytes, and RNA interference of SDPR attenuated the action of MURC on the ANP promoter. Transgenic mice expressing cardiac-specific MURC (Tg-MURC) exhibited cardiac contractile dysfunction and atrioventricular (AV) conduction disturbances with atrial chamber enlargement, reduced thickness of the ventricular wall, and interstitial fibrosis. Spontaneous episodes of atrial fibrillation and AV block were observed in Tg-MURC mice. These findings indicate that MURC modulates RhoA signaling and that MURC plays an important role in the development of cardiac dysfunction and conduction disturbance with increased vulnerability to atrial arrhythmias.
我们鉴定出一种新的肌肉特异性假定卷曲螺旋蛋白——心肌卷曲螺旋蛋白(MURC),它在从青蛙到人类的进化过程中高度保守。MURC定位于细胞质,在成年小鼠心脏的肌节Z线处聚集。从胚胎期到成年期的发育过程中,心脏中MURC mRNA的表达增加。在压力超负荷的情况下,肥大心脏中MURC mRNA的表达也增加。利用酵母双杂交系统,我们鉴定出一种血清剥夺反应(SDPR)蛋白,一种磷脂酰丝氨酸结合蛋白,为MURC结合蛋白。MURC诱导RhoA/ROCK信号通路的激活,该通路调节血清反应因子介导的心房钠尿肽(ANP)表达和肌原纤维组织。SDPR增强了MURC诱导的心肌细胞中ANP启动子的反式激活,而SDPR的RNA干扰减弱了MURC对ANP启动子的作用。表达心脏特异性MURC的转基因小鼠(Tg-MURC)表现出心脏收缩功能障碍和房室传导紊乱,伴有心房扩大、心室壁厚度减小和间质纤维化。在Tg-MURC小鼠中观察到房颤和房室传导阻滞的自发发作。这些发现表明,MURC调节RhoA信号,并且MURC在心脏功能障碍和传导紊乱的发生发展中起重要作用,增加了心房心律失常的易感性。