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线粒体DNA缺失突变与少肌症中的节段性电子传递系统异常、肌纤维萎缩、纤维分裂和氧化损伤共定位。

Mitochondrial DNA deletion mutations colocalize with segmental electron transport system abnormalities, muscle fiber atrophy, fiber splitting, and oxidative damage in sarcopenia.

作者信息

Wanagat J, Cao Z, Pathare P, Aiken J M

机构信息

Medical Scientist Training Program, University of Wisconsin Medical School, Madison, Wisconsin 53706, USA.

出版信息

FASEB J. 2001 Feb;15(2):322-32. doi: 10.1096/fj.00-0320com.

Abstract

The in vivo cellular impact of age-associated mitochondrial DNA mutations is unknown. We hypothesized that mitochondrial DNA deletion mutations contribute to the fiber atrophy and loss that cause sarcopenia, the age-related decline of muscle mass and function. We examined 82,713 rectus femoris muscle fibers from Fischer 344 x Brown Norway F1 hybrid rats of ages 5, 18, and 38 months through 1000 microns by serial cryosectioning and histochemical staining for cytochrome c oxidase and succinate dehydrogenase. Between 5 and 38 months of age, the rectus femoris muscle in the hybrid rat demonstrated a 33% decrease in mass concomitant with a 30% decrease in total fibers at the muscle mid-belly. We observed significant increases in the number of mitochondrial abnormalities with age from 289 +/- 8 ETS abnormal fibers in the entire 5-month-old rectus femoris to 1094 +/- 126 in the 38-month-old as calculated from the volume density of these abnormalities. Segmental mitochondrial abnormalities contained mitochondrial DNA deletion mutations as revealed by laser capture microdissection and whole mitochondrial genome amplification. Muscle fibers harboring mitochondrial deletions often displayed atrophy, splitting and increased steady-state levels of oxidative nucleic damage. These data suggest a causal role for age-associated mitochondrial DNA deletion mutations in sarcopenia.

摘要

与年龄相关的线粒体DNA突变对细胞的体内影响尚不清楚。我们推测线粒体DNA缺失突变会导致纤维萎缩和丢失,进而引发肌肉减少症,即与年龄相关的肌肉质量和功能衰退。我们通过连续冷冻切片和细胞色素c氧化酶及琥珀酸脱氢酶的组织化学染色,对5个月、18个月和38个月大的Fischer 344×Brown Norway F1杂交大鼠的82713条股直肌纤维进行了1000微米的检查。在5至38个月大之间,杂交大鼠的股直肌质量下降了33%,同时肌肉中部的总纤维数量减少了30%。根据这些异常的体积密度计算,我们观察到随着年龄的增长,线粒体异常数量显著增加,从整个5个月大的股直肌中289±8条ETS异常纤维增加到38个月大时的1094±126条。激光捕获显微切割和全线粒体基因组扩增显示,节段性线粒体异常包含线粒体DNA缺失突变。含有线粒体缺失的肌肉纤维通常表现出萎缩、分裂以及氧化核酸损伤稳态水平的增加。这些数据表明与年龄相关的线粒体DNA缺失突变在肌肉减少症中起因果作用。

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