Université de Bordeaux, CNRS, Centre Neurosciences Intégratives et Cognitives, Unité Mixte de Recherche, Talence Cedex, France.
J Cell Mol Med. 2009 Sep;13(9B):3122-30. doi: 10.1111/j.1582-4934.2009.00718.x. Epub 2009 Feb 11.
The mdx mouse, a model of the human Duchenne muscular dystrophy, displays impaired contractile function in skeletal, cardiac and smooth muscles. We explored the possibility that ryanodine receptor (RYR) expression could be altered in vascular muscle. The three RYR sub-types were expressed in portal vein myocytes. As observed through mRNA and protein levels, RYR2 expression was strongly decreased in mdx myocytes, whereas RYR3 and RYR1 expression were unaltered. The use of antisense oligonucleotide directed against RYR sub-types indicated that caffeine-induced Ca(2+) response and Ca(2+) spark frequency depended on RYR2 and RYR1. In mdx mice, caffeine-induced Ca(2+) responses were decreased in both amplitude and maximal rate of rise, and the frequency of Ca(2+) sparks was also strongly decreased. The gentamycin treatment was able to increase both the expression of RYR2 and the caffeine-induced Ca(2+) response to the same level as that observed in wild-type mice. Taken together, these results confirm that both RYR1 and RYR2 are required for vascular Ca(2+) signalling and indicate that inhibition of RYR2 expression may account for the decreased Ca(2+) release from the SR in mdx vascular myocytes. Finally, we suggest that gentamycin can restore the Ca(2+) signalling in smooth muscle from mdx mice by increasing RYR2 and dystrophin expression. These results may help explain the reduced efficacy of contraction in vascular myocytes of mdx mice and Duchenne muscular dystrophy-afflicted patients. Gentamycin treatment could be a good therapeutic tool to restore the vascular function.
mdx 小鼠,一种人类杜氏肌营养不良症的模型,其骨骼肌、心肌和平滑肌的收缩功能受损。我们探索了血管肌中兰尼碱受体(RYR)表达改变的可能性。门静脉肌细胞表达三种 RYR 亚型。观察到 mRNA 和蛋白水平,mdx 肌细胞中 RYR2 表达明显降低,而 RYR3 和 RYR1 表达不变。针对 RYR 亚型的反义寡核苷酸的使用表明,咖啡因诱导的 Ca(2+)反应和 Ca(2+)火花频率取决于 RYR2 和 RYR1。在 mdx 小鼠中,咖啡因诱导的 Ca(2+)反应幅度和最大上升速率均降低,Ca(2+)火花频率也明显降低。庆大霉素处理能够增加 RYR2 的表达,并使咖啡因诱导的 Ca(2+)反应达到与野生型小鼠相同的水平。综上所述,这些结果证实 RYR1 和 RYR2 均对血管 Ca(2+)信号传导至关重要,并表明 RYR2 表达的抑制可能导致 mdx 血管肌细胞 SR 中 Ca(2+)释放减少。最后,我们建议庆大霉素通过增加 RYR2 和肌营养不良蛋白的表达来恢复 mdx 小鼠平滑肌中的 Ca(2+)信号传导。这些结果可能有助于解释 mdx 小鼠和杜氏肌营养不良症患者血管肌细胞收缩功能降低的原因。庆大霉素治疗可能是恢复血管功能的一种良好治疗工具。