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在2,3-丁二酮一肟存在的情况下,对甘蔗蟾蜍抽动纤维进行收缩激活及细胞内钙离子浓度测量。

Contractile activation and measurements of intracellular Ca2+ concentration in cane toad twitch fibres in the presence of 2,3-butanedione monoxime.

作者信息

Lyster D J, Stephenson D G

机构信息

Department of Zoology, La Trobe University, Bundoora, Victoria, Australia.

出版信息

Exp Physiol. 1995 Jul;80(4):543-60. doi: 10.1113/expphysiol.1995.sp003866.

Abstract

The effects of 2,3-butanedione monoxime (BDM, 0.5-20 mM) on Ca(2+)-activated force in skinned muscle fibres, and force and Ca2+ responses in aequorin-injected intact fibres from the iliofibularis muscle of the cane toad Bufo marinus were investigated. Peak twitch force responses progressively decreased to 3% of the control response with increasing [BDM] up to 20 mM. Peak twitch aequorin light responses decreased to 65% of the control response in 10 mM BDM, but increased again to control values in 20 mM BDM. The duration of the twitch aequorin light response increased by up to 60% above 5 mM BDM. Tetanic (170 Hz) force and aequorin light responses reversibly decreased in a dose-dependent fashion to about 50% of the control response in 10 mM BDM. Failure of tetanic (170 Hz) stimulation was observed in the presence of 20 mM BDM. Intracellular [Ca2+] could be modified by changing the frequency of tetanic stimulation in the presence of BDM, permitting a study of the dependence of isometric force on intracellular [Ca2+] at different concentrations of BDM. In 10 mM BDM, the rate of force development in intact fibres was slower by a factor of two at saturating [Ca2+], and was up to one order of magnitude slower at non-saturating [Ca2+], when compared with control responses. At a similar intracellular [Ca2+] steady-state isometric force was reduced to about 85 and 50% of the control responses in 2 and 10 mM BDM, respectively. The effect of BDM on maximum Ca2+-activated force in skinned fibres paralleled the decrease in tetanic (170 Hz) force observed in intact fibres. The rate of force development in skinned fibres decreased with an increase in [BDM] at constant [Ca2+], and the sensitivity of the contractile apparatus to Ca2+ was shifted to a higher [Ca2+] by BDM. The results suggest that BDM reduces contractility in cane toad iliofibularis muscle by direct inhibition of the contractile apparatus, and reduction of the release of activator Ca2+ from the sarcoplasmic reticulum. Furthermore, BDM may be a useful tool to help study the relationship between force and [Ca2+] in intact muscle fibres.

摘要

研究了2,3 - 丁二酮一肟(BDM,0.5 - 20 mM)对蟾蜍(Bufo marinus)髂腓肌去膜肌纤维中Ca(2+)激活的力,以及对注射水母发光蛋白的完整纤维中的力和Ca2+反应的影响。随着[BDM]增加至20 mM,峰值抽搐力反应逐渐降低至对照反应的3%。在10 mM BDM中,峰值抽搐水母发光蛋白光反应降低至对照反应的65%,但在20 mM BDM中又再次增加至对照值。高于5 mM BDM时,抽搐水母发光蛋白光反应的持续时间增加高达60%。强直(170 Hz)力和水母发光蛋白光反应在10 mM BDM中以剂量依赖性方式可逆地降低至对照反应的约50%。在20 mM BDM存在下观察到强直(170 Hz)刺激失败。在BDM存在下,通过改变强直刺激的频率可以改变细胞内[Ca2+],从而能够研究在不同BDM浓度下等长力对细胞内[Ca2+]的依赖性。在10 mM BDM中,与对照反应相比,在饱和[Ca2+]时完整纤维中的力发展速率慢两倍,在非饱和[Ca2+]时慢达一个数量级。在相似的细胞内[Ca2+]稳态下,等长力在2 mM和10 mM BDM中分别降低至对照反应的约85%和50%。BDM对去膜纤维中最大Ca2+激活力的影响与在完整纤维中观察到的强直(170 Hz)力的降低相似。在恒定[Ca2+]下,去膜纤维中的力发展速率随着[BDM]的增加而降低,并且BDM使收缩装置对Ca2+的敏感性向更高的[Ca2+]转变。结果表明,BDM通过直接抑制收缩装置以及减少肌浆网中激活剂Ca2+的释放来降低蟾蜍髂腓肌的收缩性。此外,BDM可能是有助于研究完整肌纤维中力与[Ca2+]之间关系的有用工具。

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