Hong Chang-Soo, Kwon Soon-Jae, Cho Myeong-Chan, Kwak Yong-Geun, Ha Ki-Chan, Hong Bingzhe, Li Haiying, Chae Soo-Wan, Chai Ok Hee, Song Chang Ho, Li Yuhua, Kim Joon-Chul, Woo Sun-Hee, Lee So-Young, Lee Chin Ok, Kim Do Han
Department of Biological Science, College of Natural Sciences, Daegu University, Gyeongsan, South Korea.
J Mol Cell Cardiol. 2008 Apr;44(4):672-82. doi: 10.1016/j.yjmcc.2008.01.012. Epub 2008 Feb 15.
Junctate-1 is a newly identified integral endoplasmic/sarcoplasmic reticulum Ca2+ binding protein. However, its functional role in the heart is unknown. In the present study, the consequences of constitutively overexpressed junctate in cardiomyocytes were investigated using transgenic (TG) mice overexpressing junctate-1. TG mice (8 weeks old) showed cardiac remodeling such as marked bi-atrial enlargement with intra-atrial thrombus and biventricular hypertrophy. The TG mice also showed bradycardia with atrial fibrillation, reduced amplitude and elongated decay time of Ca2+ transients, increased L-type Ca2+ current and prolonged action potential durations. Time-course study (2-8 weeks) showed an initially reduced SR function due to down-regulation of SERCA2 and calsequestrin followed by sarcolemmal protein expression and cardiac hypertrophy at later age. These sequential changes could well be correlated with the physiological changes. Adrenergic agonist treatment and subsequent biochemical study showed that junctate-1 TG mice (8 weeks old) were under local PKA signaling that could cause increased L-type Ca2+ current and reduced SR function. Junctate-1 in the heart is closely linked to the homeostasis of E-C coupling proteins and a sustained increase of junctate-1 expression leads to a severe cardiac remodeling and arrhythmias.
连接蛋白-1是一种新发现的内质网/肌浆网Ca2+结合整合蛋白。然而,其在心脏中的功能作用尚不清楚。在本研究中,使用过表达连接蛋白-1的转基因(TG)小鼠研究了心肌细胞中连接蛋白组成性过表达的后果。TG小鼠(8周龄)出现心脏重塑,如显著的双房扩大伴心房内血栓形成和双心室肥厚。TG小鼠还表现出心动过缓伴心房颤动、Ca2+瞬变幅度降低和衰减时间延长、L型Ca2+电流增加以及动作电位时程延长。时间进程研究(2 - 8周)显示,由于SERCA2和肌集钙蛋白下调,SR功能最初降低,随后在后期出现肌膜蛋白表达和心脏肥大。这些相继发生的变化与生理变化密切相关。肾上腺素能激动剂治疗及随后的生化研究表明,连接蛋白-1 TG小鼠(8周龄)处于局部PKA信号传导状态,这可能导致L型Ca2+电流增加和SR功能降低。心脏中的连接蛋白-1与兴奋-收缩偶联蛋白的稳态密切相关,连接蛋白-1表达的持续增加会导致严重的心脏重塑和心律失常。