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通过Ca2+光释放测量的去表皮心肌细胞中张力发展的动力学。

Kinetics of tension development in skinned cardiac myocytes measured by photorelease of Ca2+.

作者信息

Araujo A, Walker J W

机构信息

Department of Physiology, University of Wisconsin, Madison 53706.

出版信息

Am J Physiol. 1994 Nov;267(5 Pt 2):H1643-53. doi: 10.1152/ajpheart.1994.267.5.H1643.

Abstract

The rate of activation of tension development by free Ca2+ was examined in skinned rat ventricular myocytes. Pulse photolysis of the photosensitive Ca2+ chelator, Nitr-7, was used to rapidly elevate Ca2+ in the vicinity of the myofilaments. Tension increased exponentially with a first-order rate constant (kCa) that depended on the level of Ca2+ activation. kCa increased approximately linearly from 0.9 +/- 0.2 s-1 at 20% maximal Ca(2+)-activated tension (Po) to 4.0 +/- 0.9 s-1 at 85% Po, representing a fourfold increase in kCa with activation. Reducing free Mg2+ from 1 to 0.1 mM accelerated kCa by about twofold at all levels of Ca2+. Tension development kinetics were significantly different in skinned rabbit psoas fibers: kCa increased nonlinearly from 1.2 +/- 0.2 s-1 at 15% Po to a maximum of 17.5 +/- 1.3 s-1 at 85% Po, representing a 15-fold increase in kCa with activation. Moreover, lowering free Mg2+ increased kCa only at submaximal Ca2+ in psoas fibers. Extraction of troponin C (TNC) from psoas fibers and recombination with bovine cardiac TNC did not significantly alter any of these characteristics of tension development kinetics. We conclude that significant differences exist between cardiac and fast-twitch skeletal muscles in terms of the effects of Ca2+ and Mg2+ on contraction kinetics and that these differences cannot be attributed solely to differences in TNC isoforms.

摘要

在分离的大鼠心室肌细胞中,研究了游离Ca2+激活张力发展的速率。利用光敏Ca2+螯合剂Nitr-7的脉冲光解,快速升高肌丝附近的Ca2+。张力以一级速率常数(kCa)呈指数增加,该常数取决于Ca2+激活水平。kCa从最大Ca(2+)激活张力(Po)的20%时的0.9±0.2 s-1,到Po的85%时的4.0±0.9 s-1大致呈线性增加,表明随着激活kCa增加了四倍。在所有Ca2+水平下,将游离Mg2+从1 mM降至0.1 mM可使kCa加速约两倍。在分离的兔腰大肌纤维中,张力发展动力学有显著差异:kCa从Po的15%时的1.2±0.2 s-1非线性增加到Po的85%时的最大值17.5±1.3 s-1,表明随着激活kCa增加了15倍。此外,降低游离Mg2+仅在腰大肌纤维的亚最大Ca2+水平下增加kCa。从腰大肌纤维中提取肌钙蛋白C(TNC)并与牛心脏TNC重组,并未显著改变张力发展动力学的任何这些特征。我们得出结论,在Ca2+和Mg2+对收缩动力学的影响方面,心脏和快收缩骨骼肌之间存在显著差异,并且这些差异不能仅归因于TNC亚型的差异。

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