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Regulation of skeletal muscle mitochondrial content during aging.

机译:衰老过程中骨骼肌线粒体含量的调节。

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Mitochondrial content of skeletal muscle varies among fiber types, and changes in complex ways during aging. We evaluated the regulatory origins of differences in mitochondrial content among muscles of varied fiber type in F344xBNF1 rats, and how these regulatory patterns are altered with aging. In adult (12 month) animals we found that units citrate synthase (CS)/g tissue, a marker for mitochondrial content, varied approximately 3-fold among 10 skeletal muscles. Stoichiometric relationships between CS and isocitrate dehydrogenase, aconitase, and cytochrome c oxidase were generally preserved across fiber types. Among the 10 muscles of adult rats, CS content correlated with nuclear content (R2= 0.36). Muscles differed widely in CS messenger RNA (mRNA)/DNA (an index of variation in transcriptional regulations) and units CS/CS mRNA (an index of variation in posttranscriptional regulations). All muscles of aged rats (35 months) showed an increase in mg DNA/g, suggestive of atrophy. Age-dependent declines in units CS/DNA were accompanied by reductions in CS mRNA/DNA and/or units CS/CS mRNA, depending on muscle fiber type. Thus, declines in units CS/DNA with age appeared to be due to transcriptional as well as translational variations. Differences in mitochondrial content among muscle fiber types and age groups may arise from variations in nuclear content and posttranscriptional processes, as well as transcriptional regulation.
机译:骨骼肌的线粒体含量随纤维类型而变化,并且在衰老过程中以复杂的方式变化。我们评估了F344xBNF1大鼠不同纤维类型的肌肉中线粒体含量差异的调控起源,以及这些调控模式如何随着衰老而改变。在成年(12个月)动物中,我们发现柠檬酸合酶(CS)/ g组织(线粒体含量的标志物)在10块骨骼肌中变化约3倍。 CS和异柠檬酸脱氢酶,乌头酸酶和细胞色素C氧化酶之间的化学计量关系通常在各种纤维类型之间均得到保留。在成年大鼠的10条肌肉中,CS含量与核含量相关(R2 = 0.36)。肌肉的CS信使RNA(mRNA)/ DNA(转录调控变异指数)和CS / CS mRNA(转录后调控变异指数)之间差异很大。老年大鼠(35个月)的所有肌肉均显示mg DNA / g的增加,提示萎缩。 CS / DNA单位的年龄依赖性下降伴随着CS mRNA / DNA和/或CS / CS mRNA单位的下降,具体取决于肌肉纤维类型。因此,单位CS / DNA随年龄的下降似乎是由于转录以及翻译变异。肌肉纤维类型和年龄组之间线粒体含量的差异可能源于核含量和转录后过程以及转录调控的变化。

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