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运动期间胞质酸化降低表明贝克肌营养不良症患者骨骼肌中的糖酵解活性存在缺陷。一项体内31P磁共振波谱研究。

Reduced cytosolic acidification during exercise suggests defective glycolytic activity in skeletal muscle of patients with Becker muscular dystrophy. An in vivo 31P magnetic resonance spectroscopy study.

作者信息

Lodi R, Kemp G J, Muntoni F, Thompson C H, Rae C, Taylor J, Styles P, Taylor D J

机构信息

Oxford University Department of Biochemistry and Oxford Radcliffe Hospital, UK.

出版信息

Brain. 1999 Jan;122 ( Pt 1):121-30. doi: 10.1093/brain/122.1.121.

DOI:10.1093/brain/122.1.121
PMID:10050900
Abstract

Becker muscular dystrophy is an X-linked disorder due to mutations in the dystrophin gene, resulting in reduced size and/or content of dystrophin. The functional role of this subsarcolemma protein and the biochemical mechanisms leading to muscle necrosis in Becker muscular dystrophy are still unknown. In particular, the role of a bioenergetic deficit is still controversial. In this study, we used 31p magnetic resonance spectroscopy (31p-MRS) to investigate skeletal muscle mitochondrial and glycolytic ATP production in vivo in 14 Becker muscular dystrophy patients. Skeletal muscle glycogenolytic ATP production, measured during the first minute of exercise, was similar in patients and controls. On the other hand, during later phases of exercise, skeletal muscle in Becker muscular dystrophy patients was less acidic than in controls, the cytosolic pH at the end of exercise being significantly higher in Becker muscular dystrophy patients. The rate of proton efflux from muscle fibres of Becker muscular dystrophy patients was similar to that of controls, pointing to a deficit in glycolytic lactate production as a cause of higher end-exercise cytosolic pH in patients. The maximum rate of mitochondrial ATP production was similar in muscle of Becker muscular dystrophy patients and controls. The results of this in vivo 31P-MRS study are consistent with reduced glucose availability in dystrophin-deficient muscles.

摘要

贝克尔肌肉萎缩症是一种X连锁疾病,由肌营养不良蛋白基因的突变引起,导致肌营养不良蛋白的大小和/或含量减少。这种肌膜下蛋白的功能作用以及导致贝克尔肌肉萎缩症肌肉坏死的生化机制仍然未知。特别是,生物能量缺乏的作用仍存在争议。在本研究中,我们使用31P磁共振波谱(31P-MRS)来研究14例贝克尔肌肉萎缩症患者体内骨骼肌线粒体和糖酵解ATP的产生。在运动的第一分钟内测量的骨骼肌糖原分解ATP产生在患者和对照组中相似。另一方面,在运动后期,贝克尔肌肉萎缩症患者的骨骼肌酸性低于对照组,运动结束时贝克尔肌肉萎缩症患者的细胞溶质pH值明显更高。贝克尔肌肉萎缩症患者肌肉纤维的质子外流速率与对照组相似,表明糖酵解乳酸产生不足是患者运动末期细胞溶质pH值较高的原因。贝克尔肌肉萎缩症患者和对照组肌肉中线粒体ATP产生的最大速率相似。这项体内31P-MRS研究的结果与肌营养不良蛋白缺乏的肌肉中葡萄糖可用性降低一致。

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