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机械破坏的哺乳动物心肌细胞中的张力:三磷酸腺苷镁的作用。

Tension in mechanically disrupted mammalian cardiac cells: effects of magnesium adenosine triphosphate.

作者信息

Best P M, Donaldson S K, Kerrick W G

出版信息

J Physiol. 1977 Feb;265(1):1-17. doi: 10.1113/jphysiol.1977.sp011702.

Abstract
  1. Maximum and submaximum Ca-activated tension in mechanically disrupted rat ventricular fibres was examined in solutions containing 30 micron, 100 micron and 4 mM-MgATP and either 50 micron or 1 mM ionized Mg. 2. In the absence of added Ca, significant amounts of base-line tension (up to 50% of maximum) develop in solutions containing less than 30 micron-MgATP. This effect is Mg-dependent; more tension is produced with 50 micron-Mg than with 1 mM. 3. Increasing the MgATP concentration shifts the pCa-% maximum tension relationship in the direction of increasing Ca required for activation. At 50 micron-Mg the pCa which produces 50% maximum tension is 5-8, 5-3 and 5-5 for the 30 micron, 100 micron and 4 mM-MgATP solutions. The effect of MgATP on position is relatively independent of the Mg concentration. 4. The steepness of the pCa-% maximum tension curve increases as MgATP is elevated to the millimolar range. The Hill coefficients for the different MgATP curves at 50 micron-Mg are 1-1, 1-3 and 3-0. This change in steepness accounts for the slightly lower Ca concentration needed for half-maximum tension as the MgATP concentration is increased to millimolar levels. Raising the Mg concentration to 1 mM greatly diminishes the effect of MgATP on the slope of the pCa-tension relationship. 5. The maximum tnesion a fibre bundle can produce decreases as the amount of MgATP is raised from micromolar to millimolar levels. For 50 muM-Mg, maximum tension drops about 35% as MgATP is raised from 30 micronM to 4 mM. For any concentraiton of MgATP, maximum tension is higher at 1 mM-Mg than at 50 micron-Mg. 6. Existing theories of interaction between myosin heads and the thin filament are sufficient to account for the effects of MgATP on the position of the pCa-tension curves and on maximum tension. The effects on slope are less satisfactorily explained.
摘要
  1. 在含有30微摩尔、100微摩尔和4毫摩尔MgATP以及50微摩尔或1毫摩尔游离镁的溶液中,检测了机械破坏的大鼠心室纤维中最大和次最大钙激活张力。2. 在没有添加钙的情况下,在含有少于30微摩尔MgATP的溶液中会产生大量基线张力(高达最大值的50%)。这种效应依赖于镁;50微摩尔镁比1毫摩尔镁产生的张力更大。3. 增加MgATP浓度会使pCa-最大张力百分比关系朝着激活所需钙增加的方向移动。对于50微摩尔镁,在30微摩尔、100微摩尔和4毫摩尔MgATP溶液中,产生50%最大张力的pCa分别为5.8、5.3和5.5。MgATP对位置的影响相对独立于镁浓度。4. 随着MgATP升高到毫摩尔范围,pCa-最大张力曲线的陡度增加。在50微摩尔镁时,不同MgATP曲线的希尔系数分别为1.1、1.3和3.0。随着MgATP浓度增加到毫摩尔水平,陡度的这种变化解释了产生半最大张力所需钙浓度略低的原因。将镁浓度提高到1毫摩尔会大大降低MgATP对pCa-张力关系斜率的影响。5. 当MgATP的量从微摩尔水平提高到毫摩尔水平时,纤维束能产生的最大张力会降低。对于50微摩尔镁,当MgATP从30微摩尔提高到4毫摩尔时,最大张力下降约35%。对于任何浓度的MgATP,1毫摩尔镁时的最大张力高于50微摩尔镁时的最大张力。6. 目前关于肌球蛋白头部与细肌丝相互作用的理论足以解释MgATP对pCa-张力曲线位置和最大张力的影响。对斜率的影响则较难令人满意地解释。

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