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哺乳动物平滑肌中力产生、力维持和舒张的化学能量学

Chemical energetics of force development, force maintenance, and relaxation in mammalian smooth muscle.

作者信息

Siegman M J, Butler T M, Mooers S U, Davies R E

出版信息

J Gen Physiol. 1980 Nov;76(5):609-29. doi: 10.1085/jgp.76.5.609.

Abstract

High-energy phosphate utilization (delta approximately P) associated with force development, force maintenance, and relaxation has been determined during single isometric tetani in the rabbit taenia coli. ATP resynthesis from glycolysis and respiration was stopped without deleterious effects on the muscle. At 18 degrees C and a muscle length of 95% l0, the resting rate of energy utilization is 1.8 +/- 0.2 nmol/g . s-1, or 0.85 +/- 0.2 mmol approximately P/mol of total creatine (Ct) . s-1, where Ct = 2.7 mumol/g wet wt. During the initial 25 s of stimulation when force is developed, the average rate of delta approximately P was -8.2 +/- 0.8 mmol/mol Ct . s-1, some four times greater than during the subsequent 35 s of force maintenance, when the rate was -2.0 +/- 0.6 mmol approximately P/mol Ct . s-1. The energy cost of force redevelopment (0 to 95% P0) after a quick release from the peak of a tetanus is very low compared with the initial force development. Therefore, the high rate of energy utilization during force development is not due only to internal work done against the series elasticity nor to any high rate of cross-bridge cycling inherently associated with force development. The high economy of force maintenance compared with other muscle types is undoubtedly due to a slower cross-bridge cycle time. The energy utilization during 45 s of relaxation was not statistically significant, and integral of Pdt/delta approximately P was higher during relaxation than during force maintenance in the stimulated muscle.

摘要

在兔结肠带单次等长强直收缩过程中,已测定了与力的产生、维持和松弛相关的高能磷酸利用(Δ≈P)情况。糖酵解和呼吸作用的ATP再合成被阻断,且对肌肉无有害影响。在18℃和肌肉长度为95% l0时,静息能量利用速率为1.8±0.2 nmol/g·s-1,即0.85±0.2 mmol≈P/mol总肌酸(Ct)·s-1,其中Ct = 2.7 μmol/g湿重。在刺激的最初25秒力产生期间,Δ≈P的平均速率为-8.2±0.8 mmol/mol Ct·s-1,约为随后35秒力维持期间速率(-2.0±0.6 mmol≈P/mol Ct·s-1)的四倍。与最初的力产生相比,从强直收缩峰值快速释放后力重新产生(0至95% P0)的能量成本非常低。因此,力产生期间的高能利用速率不仅不是由于克服串联弹性所做的内功,也不是由于与力产生固有相关的任何高横桥循环速率。与其他肌肉类型相比,力维持的高经济性无疑是由于横桥循环时间较慢。45秒松弛期间的能量利用无统计学意义,且在受刺激肌肉中,松弛期间Pdt/Δ≈P的积分高于力维持期间。

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