Ito K, Komazaki S, Sasamoto K, Yoshida M, Nishi M, Kitamura K, Takeshima H
Institute of Life Science, Kurume University and CREST, Japan Science and Technology Corporation, Fukuoka 839-0861, Japan.
J Cell Biol. 2001 Sep 3;154(5):1059-67. doi: 10.1083/jcb.200105040.
In skeletal muscle excitation-contraction (E-C) coupling, the depolarization signal is converted from the intracellular Ca2+ store into Ca2+ release by functional coupling between the cell surface voltage sensor and the Ca2+ release channel on the sarcoplasmic reticulum (SR). The signal conversion occurs in the junctional membrane complex known as the triad junction, where the invaginated plasma membrane called the transverse-tubule (T-tubule) is pinched from both sides by SR membranes. Previous studies have suggested that junctophilins (JPs) contribute to the formation of the junctional membrane complexes by spanning the intracellular store membrane and interacting with the plasma membrane (PM) in excitable cells. Of the three JP subtypes, both type 1 (JP-1) and type 2 (JP-2) are abundantly expressed in skeletal muscle. To examine the physiological role of JP-1 in skeletal muscle, we generated mutant mice lacking JP-1. The JP-1 knockout mice showed no milk suckling and died shortly after birth. Ultrastructural analysis demonstrated that triad junctions were reduced in number, and that the SR was often structurally abnormal in the skeletal muscles of the mutant mice. The mutant muscle developed less contractile force (evoked by low-frequency electrical stimuli) and showed abnormal sensitivities to extracellular Ca2+. Our results indicate that JP-1 contributes to the construction of triad junctions and that it is essential for the efficiency of signal conversion during E-C coupling in skeletal muscle.
在骨骼肌兴奋-收缩(E-C)偶联过程中,去极化信号通过细胞表面电压传感器与肌浆网(SR)上的Ca2+释放通道之间的功能偶联,从细胞内Ca2+储存库转换为Ca2+释放。信号转换发生在称为三联体连接的连接膜复合体中,在那里,被称为横小管(T小管)的内陷质膜从两侧被SR膜挤压。先前的研究表明,连接膜蛋白(JPs)通过跨越细胞内储存膜并与可兴奋细胞中的质膜(PM)相互作用,有助于连接膜复合体的形成。在三种JP亚型中,1型(JP-1)和2型(JP-2)在骨骼肌中均大量表达。为了研究JP-1在骨骼肌中的生理作用,我们培育了缺乏JP-1的突变小鼠。JP-1基因敲除小鼠没有吸乳行为,出生后不久就死亡了。超微结构分析表明,突变小鼠骨骼肌中的三联体连接数量减少,SR在结构上也常常异常。突变肌肉产生的收缩力较小(由低频电刺激诱发),并且对细胞外Ca2+表现出异常的敏感性。我们的结果表明,JP-1有助于三联体连接的构建,并且对于骨骼肌E-C偶联过程中信号转换的效率至关重要。