首页> 外文期刊>The Journal of Physiology >ATP splitting by half the cross-bridges can explain the twitch energetics of mouse papillary muscle
【24h】

ATP splitting by half the cross-bridges can explain the twitch energetics of mouse papillary muscle

机译:ATP跨桥的一半分裂可以解释小鼠乳头肌的抽搐能量

获取原文
获取原文并翻译 | 示例
       

摘要

The aim of this study was to quantify the fraction of cross-bridges that cycle during a cardiac twitch. Measurements of the energetics of contracting left ventricular mouse papillary muscle were made in vitro (27~OC) using the myothermic technique. Enthalpy output was partitioned into force-dependent and force-independent components using 2,3-butanedione monoxime (BDM) to selectively inhibit cross-bridge cycling. For isometric contractions and a contraction frequency of 2 Hz the net enthalpy output was 5.7 (+-) 0.8 mj g~(-1) twitch~(-1) and initial enthalpy output was 2.3 (+-) 0.3 mj g~(-1) twitch~(-1) (n = 11). Assuming that low concentrations of BDM did not affect Ca~(2+) cycling, force-independent enthalpy output was 18.6 (+-) 1.9% (n = 7) of the initial enthalpy output. Enthalpy output decreased with increased contraction frequency but was independent of shortening velocity. On the basis of these values, it was calculated that the twitch energetics were consistent with ATP splitting by half the cross-bridges and the pumping of one Ca~(2+) into the sarcoplasmic reticulum for every three cross-bridge cycles. The simplest interpretation is that half the cross-bridges completed one ATP-splitting cycle in each twitch. The lack of influence of shortening velocity on energy cost supports the idea that the amount of energy to be used is determined early in a twitch and is not greatly influenced by events that occur during the contraction.
机译:这项研究的目的是量化在心脏抽搐期间循环的跨桥部分。使用myothermic技术在体外(27〜OC)测量收缩左心室小鼠乳头肌的能量。使用2,3-丁二酮单肟(BDM)将焓输出分为力依赖性和力非依赖性成分,以选择性抑制跨桥循环。对于等距收缩和2 Hz的收缩频率,净焓输出为5.7(±)0.8 mj g〜(-1)抽搐(-1),初始焓输出为2.3(±)0.3 mj g〜(-1) 1)抽搐〜(-1)(n = 11)。假设低浓度的BDM不会影响Ca〜(2+)循环,则与力无关的焓输出为初始焓输出的18.6(±)1.9%(n = 7)。焓输出随收缩频率的增加而降低,但与缩短速度无关。根据这些值,计算出每三个横桥周期,抽搐能量与ATP横桥的分裂和将一个Ca〜(2+)泵入肌浆网相一致。最简单的解释是,每个抽搐中有一半的跨桥完成了一个ATP分裂循环。缺乏缩短速度对能量成本的影响,支持了这样一种想法,即要在抽搐中较早地确定要使用的能量,并且不受收缩过程中发生的事件的很大影响。

著录项

相似文献

  • 外文文献
  • 中文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号