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线粒体含量对呼吸控制敏感性的影响。

Influence of mitochondrial content on the sensitivity of respiratory control.

作者信息

Dudley G A, Tullson P C, Terjung R L

出版信息

J Biol Chem. 1987 Jul 5;262(19):9109-14.

PMID:3597408
Abstract

This study evaluated the sensitivity of mitochondrial respiratory control as a function of tissue oxidative capacity. The mitochondrial content of rat skeletal muscle was increased by exercise training or decreased by hypothyroidism. Muscles of the lower hindlimb were stimulated to tetanically contract in situ for 3 min at one of four frequencies to elicit a 30-fold range of oxygen consumption rates. Freeze-clamped sections of fast-twitch red gastrocnemius muscle were extracted and analyzed for metabolite levels. The sensitivity of respiratory control was examined for three models of cytosolic respiratory control (ADPf, ATP/ADPf, and ATP/(ADPf X Pi]; for each proposed model, sensitivity went up as mitochondrial content increased. Thus, a smaller change in cytosolic modulator (e.g., ADPf) is required as oxidative capacity increases. Increases in the sensitivity of cytosolic respiratory control resulted in lower flux through the near-equilibrium energy exchange reactions of creatine kinase and myokinase such that calculated free concentrations of ADP and AMP were less. Other energetically important reactions/pathways were also affected. Accumulation of lactate and the deamination of AMP to IMP were lower in tissues with higher mitochondrial content. In summary, changes in oxidative capacity directly influence the sensitivity of cytosolic respiratory control and this, in turn, has important consequences for maintenance of cellular energy balance.

摘要

本研究评估了线粒体呼吸控制的敏感性作为组织氧化能力的函数。通过运动训练增加大鼠骨骼肌的线粒体含量,或通过甲状腺功能减退降低其含量。对后肢下部肌肉在四种频率之一原位进行3分钟的强直收缩,以引发30倍范围的耗氧率。提取快速收缩的红色腓肠肌的冷冻钳夹切片并分析代谢物水平。针对三种胞质呼吸控制模型(ADPf、ATP/ADPf和ATP/(ADPf×Pi))检测呼吸控制的敏感性;对于每个提出的模型,敏感性随着线粒体含量的增加而升高。因此,随着氧化能力的增加,胞质调节剂(例如ADPf)的变化较小。胞质呼吸控制敏感性的增加导致通过肌酸激酶和肌激酶的近平衡能量交换反应的通量降低,使得计算出的ADP和AMP的游离浓度降低。其他能量上重要的反应/途径也受到影响。线粒体含量较高的组织中乳酸的积累和AMP向IMP的脱氨作用较低。总之,氧化能力的变化直接影响胞质呼吸控制的敏感性,这反过来又对维持细胞能量平衡具有重要意义。

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