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心肌细胞中兰尼碱受体簇的三维分布

Three-dimensional distribution of ryanodine receptor clusters in cardiac myocytes.

作者信息

Chen-Izu Ye, McCulle Stacey L, Ward Chris W, Soeller Christian, Allen Bryan M, Rabang Cal, Cannell Mark B, Balke C William, Izu Leighton T

机构信息

University of Kentucky, College of Medicine, Lexington, Kentucky 40536-0509, USA.

出版信息

Biophys J. 2006 Jul 1;91(1):1-13. doi: 10.1529/biophysj.105.077180. Epub 2006 Apr 7.

Abstract

The clustering of ryanodine receptors (RyR2) into functional Ca2+ release units is central to current models for cardiac excitation-contraction (E-C) coupling. Using immunolabeling and confocal microscopy, we have analyzed the distribution of RyR2 clusters in rat and ventricular atrial myocytes. The resolution of the three-dimensional structure was improved by a novel transverse sectioning method as well as digital deconvolution. In contrast to earlier reports, the mean RyR2 cluster transverse spacing was measured 1.05 microm in ventricular myocytes and estimated 0.97 microm in atrial myocytes. Intercalated RyR2 clusters were found interspersed between the Z-disks on the cell periphery but absent in the interior, forming double rows flanking the local Z-disks on the surface. The longitudinal spacing between the adjacent rows of RyR2 clusters on the Z-disks was measured to have a mean value of 1.87 microm in ventricular and 1.69 microm in atrial myocytes. The measured RyR2 cluster distribution is compatible with models of Ca2+ wave generation. The size of the typical RyR2 cluster was close to 250 nm, and this suggests that approximately 100 RyR2s might be present in a cluster. The importance of cluster size and three-dimensional spacing for current E-C coupling models is discussed.

摘要

兰尼碱受体(RyR2)聚集成功能性Ca2+释放单元是当前心脏兴奋-收缩(E-C)偶联模型的核心。利用免疫标记和共聚焦显微镜,我们分析了大鼠心室和心房肌细胞中RyR2簇的分布。通过一种新颖的横切方法以及数字去卷积提高了三维结构的分辨率。与早期报告不同,心室肌细胞中RyR2簇的平均横向间距为1.05微米,心房肌细胞中估计为0.97微米。发现插入的RyR2簇散布在细胞周边的Z盘之间,但在内部不存在,在表面形成围绕局部Z盘的双排。Z盘上相邻RyR2簇行之间的纵向间距在心室肌细胞中测量平均值为1.87微米,在心房肌细胞中为1.69微米。测得的RyR2簇分布与Ca2+波产生模型相符。典型的RyR2簇大小接近250纳米,这表明一个簇中可能存在约100个RyR2。讨论了簇大小和三维间距对当前E-C偶联模型的重要性。

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