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两栖动物和哺乳动物肌肉中的化学能量平衡。

Chemical energy balance in amphibian and mammalian muscles.

作者信息

Kushmerick M J, Crow M

出版信息

Fed Proc. 1982 Feb;41(2):163-8.

PMID:6977463
Abstract

A quantitative comparison of the utilization of creatine phosphate and ATP during a muscle contraction with the extent of recovery oxygen consumption afterward is used to establish a biochemical energy balance. In prolonged contractions of sartorii from Rana temporaria and in tetani of mouse hindlimb muscles, the predicted stoichiometric relationship, delta approximately P/delta O2 = 6.2, is observed. Thus a simple energetic paradigm of a separable contractile and recovery phase is quantitatively valid. In contrast, in brief contractions of sartorii of R. pipiens and R. temporaria, the ratio of delta approximately P/delta O2 is lower than the predicted value of 6.2. This biochemical energy imbalance observed in brief tetani of frog muscles implies: 1) a significant and continued utilization of high-energy phosphates after mechanical relaxation and 2) that measurement of high-energy phosphate utilization during contraction does not measure the total energy cost for the contraction. In the fast, pale, mouse extensor digitorum longus muscle, phosphorylation in an 18,000-dalton myosin light chain occurred during contraction and was correlated with twofold decrease in the isometric maintenance energy cost. Thus the energy cost for maintaining isometric tension in fast and slow twitch mammalian muscles depends on the physiological conditions of the contraction and appears to be variable according to myosin light chain phosphorylation.

摘要

通过对肌肉收缩过程中磷酸肌酸和三磷酸腺苷(ATP)的利用情况与随后恢复性耗氧量的程度进行定量比较,来建立生化能量平衡。在林蛙缝匠肌的长时间收缩以及小鼠后肢肌肉的强直收缩中,观察到预测的化学计量关系,即ΔP/ΔO₂ = 6.2。因此,一个可分离的收缩和恢复阶段的简单能量模式在定量上是有效的。相比之下,在北美豹蛙和林蛙缝匠肌的短暂收缩中,ΔP/ΔO₂的比值低于预测值6.2。在青蛙肌肉短暂强直收缩中观察到的这种生化能量失衡意味着:1)机械松弛后高能磷酸盐有显著且持续的利用;2)收缩过程中高能磷酸盐利用的测量并不能衡量收缩的总能量消耗。在快速、浅色的小鼠趾长伸肌中,18,000道尔顿肌球蛋白轻链的磷酸化在收缩过程中发生,并且与等长维持能量消耗降低两倍相关。因此,在快速和慢速收缩的哺乳动物肌肉中维持等长张力的能量消耗取决于收缩的生理条件,并且似乎根据肌球蛋白轻链磷酸化而变化。

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