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镁离子对去表皮大鼠心脏纤维中钙离子和锶离子激活的张力产生影响的表征

Characterization of the effects of Mg2+ on Ca2+- and Sr2+-activated tension generation of skinned rat cardiac fibers.

作者信息

Donaldson S K, Best P M, Kerrick G L

出版信息

J Gen Physiol. 1978 Jun;71(6):645-55. doi: 10.1085/jgp.71.6.645.

Abstract

Submaximum and maximum forces of the cardiac muscle contractile apparatus, activated by Ca2+ or Sr2+, were determined as a function of Mg2+ concentration. Apical left ventricular tissue from Sprague-Dawley rats was broken by homogenization into small bundles of fibers with disrupted sarcolemmas (skinned). Tension generation was activated by and graded according to the concentration of Ca2+ or Sr2+ in solutions bathing the skinned fibers and measured with a photodiode force transducer. Steady-state tensions for various levels of activation at each of four concentrations of Mg2+ (5 x 10(-5), 1 x 10(-3), 5 x 10(-3), and 10 x 10(-3) M) in the bathing solutions were analyzed. Other bathing solution constituents and parameters mimicked significant normal intracellular conditions while providing adequate buffering of [H+], [Ca2+], and [MgATP2-] (magnesium adenosine triphosphate). To assess changes in sensitivity of the mechanical system to activation by Ca2+ (or Sr2+), each submaximum tension was expressed as a percentage of the given fiber bundle's maximum force generated at saturating [Ca2+] (or [Sr2+]) at the same [Mg2+]. When plotted as saturation curves these data demonstrate that increasing [Mg2+] depresses Ca2+ sensitivity of the force-generating mechanism. The Ca2+ and Sr2+ sensitivity of the cardiac force-generating apparatus is similar at every [Mg2+], indicating that the magnitude of Mg2+ effect is similar for both types of activation. However, absolute maximum tensions at saturating activating cation concentration increased as [Mg2+] increased; the effect of Mg2+ on maximum force was proportionately the same for Ca2+ and Sr2+ activation. But because saturating [Ca2+] always resulted in a lower maximum force than saturating [Sr2+], this site of Ca2+-Mg2+ interaction appears distinct from the one influencing Ca2+ sensitivity.

摘要

测定了由Ca2+或Sr2+激活的心肌收缩装置的亚最大和最大力量,作为Mg2+浓度的函数。将来自Sprague-Dawley大鼠的左心室心尖组织通过匀浆破碎成具有破损肌膜(去皮)的小纤维束。张力产生由浸泡去皮纤维的溶液中的Ca2+或Sr2+浓度激活并分级,并用光电二极管力传感器测量。分析了在四种Mg2+浓度(5×10(-5)、1×10(-3)、5×10(-3)和10×10(-3) M)下每种激活水平的稳态张力。其他浸泡溶液成分和参数模拟了显著的正常细胞内条件,同时为[H+]、[Ca2+]和[MgATP2-](镁腺苷三磷酸)提供了足够的缓冲。为了评估机械系统对Ca2+(或Sr2+)激活的敏感性变化,每个亚最大张力表示为在相同[Mg2+]下给定纤维束在饱和[Ca2+](或[Sr2+])时产生的最大力量的百分比。当绘制为饱和曲线时,这些数据表明增加[Mg2+]会降低力产生机制对Ca2+的敏感性。在每个[Mg2+]下,心脏力产生装置对Ca2+和Sr2+的敏感性相似,表明Mg2+对两种激活类型的影响程度相似。然而,在饱和激活阳离子浓度下的绝对最大张力随着[Mg2+]的增加而增加;Mg2+对最大力量的影响在Ca2+和Sr2+激活时成比例相同。但由于饱和[Ca2+]总是导致比饱和[Sr2+]更低的最大力量,这种Ca2+-Mg2+相互作用的位点似乎与影响Ca2+敏感性的位点不同。

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