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单根蛙肌纤维疲劳及疲劳恢复的代谢关联

Metabolic correlates of fatigue and of recovery from fatigue in single frog muscle fibers.

作者信息

Nassar-Gentina V, Passonneau J V, Vergara J L, Rapoport S I

出版信息

J Gen Physiol. 1978 Nov;72(5):593-606. doi: 10.1085/jgp.72.5.593.

Abstract

Fatigue and recovery from fatigue were related to metabolism in single fibers of the frog semitendinosus muscle. The fibers were held at a sarcomere length of 2.3 microm in oxygenated Ringer solution at 15 degrees C and were stimulated for up to 150 s by a schedule of 10-s, 20-Hz tetanic trains that were interrupted by 1-s rest periods, after which they were rapidly frozen for biochemical analysis. Two kinds of fatigue were produced in relation to stimulus duration. A rapidly reversed fatigue occurred with stimulation for under 40 s and was evidenced by a decline in tetanic tension that could be overcome by 1 s of rest. A prolonged fatigue was caused by stimulation for 100-150 s. It was evidenced during stimulation by a fall in tetanic tension that could not be overcome by 1 s of rest, and after stimulation by a reduction, lasting for up to 82 min, in the peak tension of a 200-ms test tetanus. Fiber phosphocreatine (PCr) fell logarithmically in relation to stimulus duration, from a mean of 121 +/- 8 nmol/mg protein (SEM, n = 12) to 10% of this value after 150 s of stimulation. PCr returned to normal levels after 90-120 min of rest. Stimulation for 150 s did not significantly affect fiber glycogen and reduced fiber ATP by at most 15%. It is suggested that the prolonged fatigue caused by 100-150 s of tetanic stimulation was caused by long-lasting failure of excitation-contraction coupling, as it was not accompanied by depletion of energy stores in the form of ATP. One possibility is that H+ accumulated in fatigued fibers so as to interfere with the action of Ca2+ in the coupling process.

摘要

青蛙半腱肌单纤维的疲劳及疲劳恢复与新陈代谢有关。将纤维置于15℃充氧的任氏液中,肌节长度保持在2.3微米,以10秒、20赫兹的强直收缩串刺激长达150秒,每次强直收缩串之间有1秒的休息时间,之后迅速冷冻以便进行生化分析。根据刺激持续时间产生了两种疲劳。刺激40秒以下会产生快速逆转的疲劳,表现为强直张力下降,休息1秒即可克服。刺激100 - 150秒会导致长期疲劳。刺激期间表现为强直张力下降,休息1秒无法克服,刺激后200毫秒测试强直收缩的峰值张力降低,持续长达82分钟。纤维磷酸肌酸(PCr)随刺激持续时间呈对数下降,从平均121±8纳摩尔/毫克蛋白质(标准误,n = 12)降至刺激150秒后该值的10%。休息90 - 120分钟后,PCr恢复到正常水平。刺激150秒对纤维糖原没有显著影响,纤维ATP最多降低15%。有人认为,100 - 150秒的强直刺激导致的长期疲劳是由兴奋 - 收缩偶联的长期失效引起的,因为它并未伴随ATP形式的能量储备耗尽。一种可能性是,H⁺在疲劳纤维中积累,从而干扰了Ca²⁺在偶联过程中的作用。

相似文献

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Muscle fatigue in the frog semitendinosus: role of the high-energy phosphates and Pi.
Am J Physiol. 1992 Oct;263(4 Pt 1):C803-9. doi: 10.1152/ajpcell.1992.263.4.C803.
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Energetics of relaxation in frog muscle.青蛙肌肉放松的能量学
J Physiol. 1974 Apr;238(2):437-46. doi: 10.1113/jphysiol.1974.sp010535.

引用本文的文献

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The excitation-contraction coupling mechanism in skeletal muscle.骨骼肌中的兴奋-收缩偶联机制。
Biophys Rev. 2014 Mar;6(1):133-160. doi: 10.1007/s12551-013-0135-x. Epub 2014 Jan 24.

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