Kaila K, Voipio J
Department of Zoology, University of Helsinki, Finland.
Pflugers Arch. 1990 Jul;416(5):501-11. doi: 10.1007/BF00382682.
The dependence of intracellular free calcium ([Ca2+]i) and tension on membrane potential and intracellular pH (pHi) was studied in single isolated fibres of the crayfish claw-opener muscle using ion-selective microelectrodes. Tension (T) was quantified as a percentage of the maximum force, or as force per cross-sectional area (N/cm2). In resting fibres, pHi had a mean value of 7.06. Contractions evoked by an increase extracellular potassium [( K+]0) produced a fall in pHi of 0.01-0.05 units. The lowest measured levels of resting [Ca2+]i corresponded to a pCai (= -log [Ca2+]i) of 6.8. Intracellular Ca2+ transients recorded during K(+)-induced contractions did not reveal any distinct threshold for force development. Both the resting [Ca2+]i and resting tension were decreased by an intracellular alkalosis and increased by an acidosis. The sensitivity of resting tension to a change in pHi (quantified as -dT/dpHi) showed a progressive increase during a fall in pHi within the range examined (pHi 6.2-7.5). The pHi/[Ca2+]i and pHi/tension relationships were monotonic throughout the multiphasic pHi change caused by NH4Cl. A fall of 0.5-0.6 units in pHi did not produce a detectable shift in the pCai/tension relationship at low levels of force development. The results indicate that resting [Ca2+]i is slightly higher than the level required for contractile activation. They also show that the dependence of tension on pHi in crayfish muscle fibres is attributable to a direct H+ and Ca2+ interaction at the level of Ca2+ sequestration and/or transport. Finally, the results suggest that in situ, the effect of pH on the Ca2+ sensitivity of the myofibrillar system is not as large as could be expected on the basis of previous work on skinned crustacean muscle fibres.
利用离子选择性微电极,在小龙虾爪 opener 肌的单个分离纤维中研究了细胞内游离钙([Ca2+]i)和张力对膜电位和细胞内 pH(pHi)的依赖性。张力(T)以最大力的百分比或每横截面积的力(N/cm2)来量化。在静息纤维中,pHi 的平均值为 7.06。细胞外钾离子浓度([K+]0)升高引起的收缩导致 pHi 下降 0.01 - 0.05 个单位。测得的最低静息 [Ca2+]i 水平对应于 pCai(= -log [Ca2+]i)为 6.8。在钾离子诱导的收缩过程中记录到的细胞内 Ca2+ 瞬变未显示出任何明显的力产生阈值。静息 [Ca2+]i 和静息张力均因细胞内碱中毒而降低,因酸中毒而升高。在研究的 pHi 范围内(pHi 6.2 - 7.5),静息张力对 pHi 变化的敏感性(量化为 -dT/dpHi)在 pHi 下降过程中呈逐渐增加趋势。在由氯化铵引起的多相 pHi 变化过程中,pHi/[Ca2+]i 和 pHi/张力关系始终是单调的。在低水平力发展时,pHi 下降 0.5 - 0.6 个单位并未使 pCai/张力关系产生可检测到的偏移。结果表明,静息 [Ca2+]i 略高于收缩激活所需水平。它们还表明,小龙虾肌肉纤维中张力对 pHi 的依赖性归因于 Ca2+ 螯合和/或转运水平上 H+ 与 Ca2+ 的直接相互作用。最后,结果表明在原位,pH 对肌原纤维系统 Ca2+ 敏感性的影响并不像基于先前对去表皮甲壳类肌肉纤维的研究预期的那么大。