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骨骼肌中兰尼碱受体(RyR)足突与二氢吡啶受体(DHPR)四联体的相对位置。

The relative position of RyR feet and DHPR tetrads in skeletal muscle.

作者信息

Paolini Cecilia, Protasi Feliciano, Franzini-Armstrong Clara

机构信息

University of Pennsylvania, Department of Cell & Developmental Biology, Philadelphia 19104-6058, USA.

出版信息

J Mol Biol. 2004 Sep 3;342(1):145-53. doi: 10.1016/j.jmb.2004.07.035.

Abstract

In skeletal muscle, L-type calcium channels (or dihydropyridine receptors, DHPRs) are coupled functionally to the calcium release channels of the sarcoplasmic reticulum (or ryanodine receptors, RyRs) within specialized structures called calcium release units (CRUs). The functional linkage requires a specific positioning of four DHPRs in correspondence of the four identical subunits of a single RyR type 1. Four DHPRs linked to the four binding sites of the RyR1 cytoplasmic domain (or foot), define the corners of a square, constituting a tetrad. RyRs self-assemble into ordered arrays and by associating with them, DHPRs also assemble into ordered arrays. The approximate location of the four DHPRs relative to the four identical subunits of a RyR-foot can be predicted on the basis of the relative position of tetrads and feet within the arrays. However, until recently one vital piece of information has been lacking: the orientation of the two arrays relative to one another. In this work we have defined the relative orientation of the RyR and DHPR arrays by directly superimposing replicas of rotary shadowed images of rows of feet, obtained from isolated SR vesicles, and replicas of tetrad arrays obtained by freeze-fracture. If the orientation for the two sets of images is carefully maintained, the superimposition provides specific constraints on the DHPR-RyR relative position.

摘要

在骨骼肌中,L型钙通道(或二氢吡啶受体,DHPRs)在称为钙释放单元(CRUs)的特殊结构内与肌浆网的钙释放通道(或兰尼碱受体,RyRs)功能偶联。这种功能联系要求四个DHPRs与单个1型RyR的四个相同亚基相对应地特定定位。与RyR1胞质结构域(或足)的四个结合位点相连的四个DHPRs,确定了一个正方形的角,构成一个四联体。RyRs自组装成有序阵列,并且通过与它们结合,DHPRs也组装成有序阵列。基于阵列中四联体和足的相对位置,可以预测四个DHPRs相对于RyR足的四个相同亚基的大致位置。然而,直到最近还缺少一条重要信息:这两个阵列相对于彼此的方向。在这项工作中,我们通过直接叠加从分离的肌浆网囊泡获得的足排旋转阴影图像的复制品和通过冷冻断裂获得的四联体阵列的复制品,确定了RyR和DHPR阵列的相对方向。如果仔细保持两组图像的方向,叠加会对DHPR-RyR相对位置提供特定的限制。

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