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RYR1 and RYR3 have different roles in the assembly of calcium release units of skeletal muscle.

机译:RYR1和RYR3在骨骼肌钙释放单元的组装中具有不同的作用。

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摘要

Calcium release units (CRUs) are junctions between the sarcoplasmic reticulum (SR) and exterior membranes that mediates excitation contraction (e-c) coupling in muscle cells. In skeletal muscle CRUs contain two isoforms of the sarcoplasmic reticulum Ca(2+)release channel: ryanodine receptors type 1 and type 3 (RyR1 and RyR3). 1B5s are a mouse skeletal muscle cell line that carries a null mutation for RyR1 and does not express either RyR1 or RyR3. These cells develop dyspedic SR/exterior membrane junctions (i.e., dyspedic calcium release units, dCRUs) that contain dihydropyridine receptors (DHPRs) and triadin, two essential components of CRUs, but no RyRs (or feet). Lack of RyRs in turn affects the disposition of DHPRs, which is normally dictated by a linkage to RyR subunits. In the dCRUs of 1B5 cells, DHPRs are neither grouped into tetrads nor aligned in two orthogonal directions. We have explored the structural role of RyR3 in the assembly of CRUs in 1B5 cells independently expressing either RyR1 or RyR3. Either isoform colocalizes with DHPRs and triadin at the cell periphery. Electron microscopy shows that expression of either isoform results in CRUs containing arrays of feet, indicating the ability of both isoforms to be targeted to dCRUs and to assemble in ordered arrays in the absence of the other. However, a significant difference between RyR1- and RyR3-rescued junctions is revealed by freeze fracture. While cells transfected with RyR1 show restoration of DHPR tetrads and DHPR orthogonal alignment indicative of a link to RyRs, those transfected with RyR3 do not. This indicates that RyR3 fails to link to DHPRs in a specific manner. This morphological evidence supports the hypothesis that activation of RyR3 in skeletal muscle cells must be indirect and provides the basis for failure of e-c coupling in muscle cells containing RyR3 but lacking RyR1 (see the accompanying report, ).
机译:钙释放单元(CRU)是肌浆网(SR)与外部膜之间的连接,介导肌肉细胞中的兴奋收缩(e-c)耦合。在骨骼肌中,CRUs包含肌浆网Ca(2+)释放通道的两个同工型:ryanodine受体1型和3型(RyR1和RyR3)。 1B5s是一种小鼠骨骼肌细胞系,其携带RyR1无效突变且不表达RyR1或RyR3。这些细胞发育异常的SR /外膜连接(即异常的钙释放单元dCRU),其中包含二氢吡啶受体(DHPR)和三联蛋白,这是CRU的两个基本成分,但没有RyR(或脚)。 RyR的缺乏反过来会影响DHPR的配置,这通常是由与RyR亚基的连接决定的。在1B5细胞的dCRU中,DHPR既不分为四边形,也没有沿两个正交方向排列。我们已经探索了RyR3在1B5细胞中独立表达RyR1或RyR3的CRU组装中的结构作用。两种同工型都与DHPR和triadin共定位在细胞外围。电子显微镜显示,两种同工型的表达均导致含有足阵列的CRU出现,表明两种同工型均靶向dCRU并在不存在另一种的情况下以有序阵列组装的能力。但是,RyR1和RyR3营救的结点之间存在显着差异,这是由于冻裂所致。用RyR1转染的细胞显示DHPR四联体的还原和DHPR正交排列指示与RyRs的连接,而用RyR3转染的细胞则没有。这表明RyR3无法以特定方式链接到DHPR。这种形态学证据支持骨骼肌细胞中RyR3的激活必须是间接的这一假设,并为包含RyR3但缺少RyR1的肌肉细胞中e-c偶联失败提供了基础(请参阅随附的报告)。

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