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钙蛋白酶3缺陷型小鼠的力量损伤与机械破坏无关。

Force impairment in calpain 3-deficient mice is not correlated with mechanical disruption.

作者信息

Fougerousse Françoise, Gonin Patrick, Durand Muriel, Richard Isabelle, Raymackers Jean-Marc

机构信息

Centre National de la Recherche Scientifique, Unité Mixte de Recherche 8115-Généthon, 1 rue de l'Internationale, BP 60, 91002 Evry, France.

出版信息

Muscle Nerve. 2003 May;27(5):616-23. doi: 10.1002/mus.10368.

Abstract

Defects in human calpain 3 are responsible for limb-girdle muscular dystrophy type 2A, an autosomal-recessive disorder characterized mainly by late-onset proximal muscular atrophy. A corresponding murine model has previously been generated by gene targeting. In this report, muscular activity of calpain 3-deficient (capn3(-/-)) mice was evaluated at different ages. Growth curves showed a progressive global muscular atrophy. Histological examination throughout the lifespan of mice confirmed the dystrophic lesions. Whole animal tests showed only a mild significant impairment of the forelimbs. Studies of the mechanical properties of selected isolated fast- and slow-twitch muscles demonstrated that slow-twitch muscles were significantly weaker in capn3(-/-) mice than in wild-type mice. Three different tests showed that there was no membrane disruption, suggesting a nonmechanical etiology of capn3(-/-) mice dystrophy. These findings are consistent with a mechanism involving signaling systems.

摘要

人类钙蛋白酶3缺陷是导致2A型肢带型肌营养不良症的原因,这是一种常染色体隐性疾病,主要特征为迟发性近端肌肉萎缩。之前已通过基因靶向技术构建了相应的小鼠模型。在本报告中,对不同年龄段的钙蛋白酶3缺陷(capn3(-/-))小鼠的肌肉活动进行了评估。生长曲线显示出渐进性的全身性肌肉萎缩。对小鼠整个生命周期的组织学检查证实了营养不良性病变。全动物测试表明仅前肢有轻度明显损伤。对选定的分离快肌和慢肌的力学特性研究表明,capn3(-/-)小鼠的慢肌比野生型小鼠明显更弱。三种不同测试表明不存在膜破坏,提示capn3(-/-)小鼠营养不良的病因不是机械性的。这些发现与涉及信号系统的机制一致。

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