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表达 R4892W 和 G4896V 型 1 型兰尼碱受体病突变体的肌纤维中的 Ca2+ 释放。

Ca2+ release in muscle fibers expressing R4892W and G4896V type 1 ryanodine receptor disease mutants.

机构信息

Centre de Génétique et de Physiologie Moléculaire et Cellulaire, CNRS UMR 5534-Université Lyon 1, Villeurbanne, France.

出版信息

PLoS One. 2013;8(1):e54042. doi: 10.1371/journal.pone.0054042. Epub 2013 Jan 7.

Abstract

The large and rapidly increasing number of potentially pathological mutants in the type 1 ryanodine receptor (RyR1) prompts the need to characterize their effects on voltage-activated sarcoplasmic reticulum (SR) Ca(2+) release in skeletal muscle. Here we evaluated the function of the R4892W and G4896V RyR1 mutants, both associated with central core disease (CCD) in humans, in myotubes and in adult muscle fibers. For both mutants expressed in RyR1-null (dyspedic) myotubes, voltage-gated Ca(2+) release was absent following homotypic expression and only partially restored following heterotypic expression with wild-type (WT) RyR1. In muscle fibers from adult WT mice, both mutants were expressed in restricted regions of the fibers with a pattern consistent with triadic localization. Voltage-clamp-activated confocal Ca(2+) signals showed that fiber regions endowed with G4896V-RyR1s exhibited an ∼30% reduction in the peak rate of SR Ca(2+) release, with no significant change in SR Ca(2+) content. Immunostaining revealed no associated change in the expression of either α1S subunit (Cav1.1) of the dihydropyridine receptor (DHPR) or type 1 sarco(endo)plasmic reticulum Ca(2+) ATPase (SERCA1), indicating that the reduced Ca(2+) release resulted from defective RyR1 function. Interestingly, in spite of robust localized junctional expression, the R4892W mutant did not affect SR Ca(2+) release in adult muscle fibers, consistent with a low functional penetrance of this particular CCD-associated mutant.

摘要

大量且不断增加的 1 型兰尼碱受体 (RyR1) 潜在病理性突变体促使人们需要对其在骨骼肌电压激活肌质网 (SR) Ca(2+) 释放中的作用进行特征描述。在此,我们评估了与人类中央核疾病 (CCD) 相关的 R4892W 和 G4896V RyR1 突变体在肌管和成年肌肉纤维中的功能。对于在 RyR1 缺失(肌营养不良)肌管中表达的两种突变体,同种型表达后电压门控 Ca(2+) 释放缺失,而与野生型 (WT) RyR1 异源型表达后仅部分恢复。在成年 WT 小鼠的肌肉纤维中,两种突变体都在纤维的受限区域表达,其模式与三联体定位一致。电压钳激活共聚焦 Ca(2+) 信号显示,赋予 G4896V-RyR1s 的纤维区域的 SR Ca(2+) 释放峰值速率降低约 30%,而 SR Ca(2+) 含量无明显变化。免疫染色显示二氢吡啶受体 (DHPR) 的 α1S 亚基 (Cav1.1) 或 1 型肌浆内质网 Ca(2+) ATP 酶 (SERCA1) 的表达没有相关变化,表明减少的 Ca(2+) 释放是由于 RyR1 功能缺陷所致。有趣的是,尽管存在强大的局部连接表达,但 R4892W 突变体不会影响成年肌肉纤维中的 SR Ca(2+) 释放,这与该特定 CCD 相关突变体的低功能外显率一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/df09/3538700/d64ad30e8b7d/pone.0054042.g001.jpg

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