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等长和动态条件下大鼠去皮肤心肌的ATP酶活性和力产生

ATPase activity and force production in skinned rat cardiac muscle under isometric and dynamic conditions.

作者信息

Ebus J P, Stienen G J

机构信息

Department of Physiology, Free University, Amsterdam, The Netherlands.

出版信息

J Mol Cell Cardiol. 1996 Aug;28(8):1747-57. doi: 10.1006/jmcc.1996.0164.

DOI:10.1006/jmcc.1996.0164
PMID:8877784
Abstract

ATPase activity and force were determined in maximally activated skinned cardiac trabeculae from rat at 20 degrees C, 2.2 microns sarcomere length and pH 7.0. Measurements were performed during isometric contraction, and when square-wave shaped length changes with an amplitude of 0.5-5% of the resting length (Lo) and a repetition frequency of 2-167 Hz were imposed. Isometric ATPase activity amounted to 0.48 +/- 0.04 mM/s, and isometric force was 53 +/- 3 kN/m2. During length changes, an increase in ATP consumption was observed, reminiscent of the Fenn effect, to a maximal value of 1.7 times the isometric value, while the average force decreased. The frequency dependent increase in ATPase activity during length changes is compatible with a mono exponential recovery process, with a rate constant of 32 +/- 7/s. In a two-state scheme of crossbridge cycling, an apparent attachment rate of 28.6/s and an apparent detachment rate of 3.4/s were determined. To relate these observations with crossbridge kinetics during isotonic shortening, ramp-shaped length changes (2.5% Lo, 23 Hz) were imposed. ATPase activity and average force during ramp shortenings were similar to the values obtained during square-wave shaped length changes with the same amplitude and frequency. During lengthening ramps, the increase in ATPase activity and the decrease in average force were significantly less than during the square-wave protocol. These results indicate that the energetic effect of stretches is relatively small.

摘要

在20摄氏度、肌节长度为2.2微米且pH值为7.0的条件下,测定了大鼠最大激活的去表皮心脏小梁中的ATP酶活性和张力。测量在等长收缩期间进行,并且当施加幅度为静息长度(Lo)的0.5 - 5%且重复频率为2 - 167 Hz的方波形状的长度变化时也进行测量。等长ATP酶活性为0.48 ± 0.04 mM/s,等长张力为53 ± 3 kN/m²。在长度变化期间,观察到ATP消耗增加,这让人联想到芬恩效应,最大值达到等长值的1.7倍,而平均张力下降。长度变化期间ATP酶活性的频率依赖性增加与单指数恢复过程相符,速率常数为32 ± 7/s。在横桥循环的双态模型中,确定了表观附着速率为28.6/s,表观脱离速率为3.4/s。为了将这些观察结果与等张缩短期间的横桥动力学联系起来,施加了斜坡形状的长度变化(2.5% Lo,23 Hz)。斜坡缩短期间的ATP酶活性和平均张力与在相同幅度和频率的方波形状长度变化期间获得的值相似。在延长斜坡期间,ATP酶活性的增加和平均张力的下降明显小于方波方案期间。这些结果表明拉伸的能量效应相对较小。

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