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Y522S-RYR1基因敲入小鼠线粒体中钙的过度积累:肌浆网渗漏与氧化还原状态改变之间的联系

Excessive Accumulation of Ca in Mitochondria of Y522S-RYR1 Knock-in Mice: A Link Between Leak From the Sarcoplasmic Reticulum and Altered Redox State.

作者信息

Canato Marta, Capitanio Paola, Cancellara Lina, Leanza Luigi, Raffaello Anna, Reane Denis Vecellio, Marcucci Lorenzo, Michelucci Antonio, Protasi Feliciano, Reggiani Carlo

机构信息

Department of Biomedical Sciences, School of Medicine and Surgery, University of Padova, Padua, Italy.

Department of Biology, University of Padova, Padua, Italy.

出版信息

Front Physiol. 2019 Sep 13;10:1142. doi: 10.3389/fphys.2019.01142. eCollection 2019.

Abstract

Mice (Y522S or YS), carrying a mutation of the sarcoplasmic reticulum (SR) Ca release channel of skeletal muscle fibers (ryanodine receptor type-1, RyR1) which causes Ca leak, are a widely accepted and intensively studied model for human malignant hyperthermia (MH) susceptibility. Since the involvement of reactive oxygen species (ROS) and of mitochondria in MH crisis has been previously debated, here we sought to determine Ca uptake in mitochondria and its possible link with ROS production in single fibers isolated from flexor digitorum brevis (FDB) of YS mice. We found that Ca concentration in the mitochondrial matrix, as detected with the ratiometric FRET-based 4mtD3cpv probe, was higher in YS than in wild-type (WT) fibers at rest and after Ca release from SR during repetitive electrical stimulation or caffeine administration. Also mitochondrial ROS production associated with contractile activity (detected with Mitosox probe) was much higher in YS fibers than in WT. Importantly, the inhibition of mitochondrial Ca uptake achieved by silencing MCU reduced ROS accumulation in the matrix and Ca release from SR. Finally, inhibition of mitochondrial ROS accumulation using Mitotempo reduced SR Ca release in YS fibers exposed to caffeine. The present results support the view that mitochondria take up larger amounts of Ca in YS than in WT fibers and that mitochondrial ROS production substantially contributes to the increased caffeine-sensitivity and to the enhanced Ca release from SR in YS fibers.

摘要

携带骨骼肌纤维肌浆网(SR)钙释放通道(1型兰尼碱受体,RyR1)突变导致钙泄漏的小鼠(Y522S或YS),是一种被广泛接受且深入研究的人类恶性高热(MH)易感性模型。由于活性氧(ROS)和线粒体在MH危机中的作用此前一直存在争议,我们在此研究了YS小鼠趾短屈肌(FDB)分离的单纤维中线粒体的钙摄取及其与ROS产生的可能联系。我们发现,使用基于比率荧光共振能量转移的4mtD3cpv探针检测到,在静息状态下以及重复电刺激或给予咖啡因后SR释放钙后,YS纤维线粒体基质中的钙浓度高于野生型(WT)纤维。此外,与收缩活动相关的线粒体ROS产生(用Mitosox探针检测)在YS纤维中也比WT纤维高得多。重要的是,通过沉默MCU抑制线粒体钙摄取可减少基质中的ROS积累以及SR的钙释放。最后,使用Miotempo抑制线粒体ROS积累可减少暴露于咖啡因的YS纤维中的SR钙释放。目前的结果支持这样的观点,即与WT纤维相比,YS纤维中线粒体摄取的钙量更多,并且线粒体ROS产生在很大程度上导致了YS纤维对咖啡因敏感性的增加以及SR钙释放的增强。

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