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离子强度对去膜小鼠骨骼肌纤维中笼形ATP闪光光解诱导的僵直松弛的影响。

The influence of ionic strength upon relaxation from rigor induced by flash photolysis of caged-ATP in skinned murine skeletal muscle fibres.

作者信息

Veigel C, v Maydell R D, Wiegand-Steubing R, Goody R, Fink H A

机构信息

II. Institute of Physiology, University of Heidelberg, Im Neuenheimer Feld 326, D-69120 Heidelberg, Germany.

出版信息

Pflugers Arch. 1995 Oct;430(6):994-1003. doi: 10.1007/BF01837414.

Abstract

The influence of ionic strength upon relaxation kinetics from rigor in skinned murine extensor digitorum longus (EDL) skeletal muscle fibres was examined using photolysis of caged-ATP at low Ca2+. The ionic strength was adjusted with either KMeSO3 or ethylene glycolbis-(beta-aminoethyl ether) N,N,N',N'-tetraacetic acid, dipotassium salt (K2EGTA) in the range of tau /2 = 65-215mM, or I.E. 49-194mM, where I.E. denotes ionic equivalent. Following rigor development at a tau /2 of 165-215mM (I.E. 144-194mM), the liberation of approximately 0.5mM ATP resulted in an initial 6-to 10-ms detachment phase with a decline in force of approximately 10-20% followed by a 10-to 30-ms reattachment with up to a 60% increase compared to the corresponding rigor level and a final detachment leading to complete relaxation. Interestingly, when similar ATP concentrations were liberated at lower ionic strengths between a tau /2 of 65mM and 110mM (I.E. 60-100mM), the initial detachment phase was shortened and force decreased by only approximately 5-10%, while the following reattachment phase was lengthened and led to an increased steady-state force of approximately 20-80% without final relaxation. ATP-induced detachment and subsequent reattachment were mainly determined by the currently present ionic strength and were relatively independent of the preceding rigor state which had been developed at higher or lower ionic strengths. The effects of phosphate and apyrase on the force transient suggest that reattachment of ADP- binding crossbridges may contribute to the increase in tension at high and even more at low ionic strengths. The study shows that the kinetics of initial fast relaxation and subsequent redevelopment of force following flash photolysis of similar ATP concentrations are markedly modified by the ionic strength in the narrow range of between 65mM and 215mM.

摘要

利用低钙条件下笼锁ATP的光解作用,研究了离子强度对去表皮的小鼠趾长伸肌(EDL)骨骼肌纤维从僵直状态开始的松弛动力学的影响。离子强度通过甲基亚磺酸钾或乙二醇双(β-氨基乙醚)N,N,N',N'-四乙酸二钾盐(K2EGTA)在τ/2 = 65 - 215mM(即离子当量为49 - 194mM)范围内进行调节。在τ/2为165 - 215mM(离子当量为144 - 194mM)时形成僵直后,释放约0.5mM ATP会导致初始6至10毫秒的脱离阶段,力下降约10 - 20%,随后是10至30毫秒的重新附着阶段,与相应的僵直水平相比,力增加高达60%,最后是导致完全松弛的脱离阶段。有趣的是,当在τ/2为65mM至110mM(离子当量为60 - 100mM)的较低离子强度下释放相似的ATP浓度时,初始脱离阶段缩短,力仅下降约5 - 10%,而随后的重新附着阶段延长,导致稳态力增加约20 - 80%,且没有最终松弛。ATP诱导的脱离和随后的重新附着主要由当前存在的离子强度决定,并且相对独立于之前在较高或较低离子强度下形成的僵直状态。磷酸盐和腺苷三磷酸双磷酸酶对力瞬变的影响表明,ADP结合横桥的重新附着可能有助于在高离子强度下,甚至在更低离子强度下张力增加。该研究表明,在65mM至215mM的狭窄范围内,离子强度会显著改变相似ATP浓度的闪光光解后初始快速松弛和随后力重新发展的动力学。

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