Masumiya Haruko, Asaumi Yasuhide, Nishi Miyuki, Minamisawa Susumu, Adachi-Akahane Satomi, Yoshida Morikatsu, Kangawa Kenji, Ito Kenta, Kagaya Yutaka, Yanagisawa Teruyuki, Yamazaki Tetsuo, Ma Jianjie, Takeshima Hiroshi
Department of Medical Chemistry, Tohoku University Graduate School of Medicine, Sendai, Japan.
Channels (Austin). 2009 Jan-Feb;3(1):6-11. doi: 10.4161/chan.3.1.7571. Epub 2009 Jan 8.
Mitsugumin 53 (MG53) is a muscle-specific RBCC/TRIM family member predominantly localized on small vesicles underneath the plasma membrane. Upon cell-surface lesion MG53 recruits the vesicles to the repair site in an oxidation-dependent manner and MG53-knockout mice develop progressive myopathy associated with defective membrane repair. In this report, we focus on MG53-knockout cardiomyocytes showing abnormal action potential profile and a reduced K+ current density. In cDNA expression experiments using cultured cells, KV2.1-mediated currents were remarkably increased by MG53 without affecting the total and cell-surface levels of channel expression. In imaging analysis MG53 seemed to facilitate the mobility of KV2.1-containing endocytic vesicles with acidic pH. However, similar effects on the current density and vesicular mobility were not observed in the putative dominant-negative form of MG53. Our data suggest that MG53 is involved in a constitutive cycle of certain cell-surface proteins between the plasma membrane and endosome-like vesicles in striated muscle, and also imply that the vesicular dynamics are essential for the quality control of KV2.1 in cardiomyocytes.
三宅素53(MG53)是一种肌肉特异性RBCC/TRIM家族成员,主要定位于质膜下方的小囊泡上。在细胞表面受损时,MG53以氧化依赖的方式将囊泡募集到修复位点,MG53基因敲除小鼠会发展出与膜修复缺陷相关的进行性肌病。在本报告中,我们重点研究了MG53基因敲除的心肌细胞,这些细胞表现出异常的动作电位特征和降低的钾离子电流密度。在使用培养细胞的cDNA表达实验中,MG53显著增加了KV2.1介导的电流,而不影响通道表达的总量和细胞表面水平。在成像分析中,MG53似乎促进了含KV2.1的酸性pH内吞囊泡的移动性。然而,在假定的MG53显性负性形式中未观察到对电流密度和囊泡移动性的类似影响。我们的数据表明,MG53参与了横纹肌中某些细胞表面蛋白在质膜和内体样囊泡之间的组成性循环,也暗示囊泡动力学对心肌细胞中KV2.1的质量控制至关重要。