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离子相互作用在扇贝重酶解肌球蛋白的调节机制中发挥作用。

Ionic interactions play a role in the regulatory mechanism of scallop heavy meromyosin.

作者信息

Nyitrai M, Stafford W F, Szent-Györgyi A G, Geeves M A

机构信息

Department of Biosciences, University of Kent at Canterbury, Canterbury, Kent, United Kingdom.

出版信息

Biophys J. 2003 Aug;85(2):1053-62. doi: 10.1016/S0006-3495(03)74544-5.

Abstract

Heavy meromyosin from scallop (scHMM) striated muscle is regulated by calcium binding to the essential light chain. The regulation can be modeled with a calcium-dependent equilibrium between on and off scHMM conformations. The observed rate constant for mant-ADP dissociation from scHMM is calcium dependent, and we show here that it can be used to define the equilibrium constant (K(eq)) between on and off conformations. The data show that K(eq) is markedly ionic strength dependent, with high salt (>/=200 mM) abolishing the off state even in the absence of calcium and low salt (<50 mM) favoring the off state even in the presence of calcium. Debye-Huckel plots of the equilibrium constant (K(eq)) for the on and off forms gave parallel slopes (5.94 +/- 0.33 and 6.36 +/- 0.17 M(-0.5)) in the presence and absence of calcium. The presence of an equilibrium mixture of two conformations was confirmed by sedimentation data and the effects of ADP, calcium and ionic strength were in qualitative agreement. Thus scHMM exists in two conformations that can be distinguished in sedimentation profiles and by the rate of release of mant-ADP. Increasing salt concentrations biases the system toward the on state, suggesting a role for ionic interactions in stabilizing the off state.

摘要

扇贝横纹肌的重酶解肌球蛋白(scHMM)受钙与必需轻链结合的调节。这种调节可以用scHMM构象的开启和关闭之间的钙依赖性平衡来模拟。观察到的mant-ADP从scHMM解离的速率常数是钙依赖性的,我们在此表明它可用于定义开启和关闭构象之间的平衡常数(K(eq))。数据表明,K(eq)明显依赖离子强度,高盐(≥200 mM)即使在没有钙的情况下也会消除关闭状态,而低盐(<50 mM)即使在有钙的情况下也有利于关闭状态。开启和关闭形式的平衡常数(K(eq))的德拜-休克尔图在有钙和无钙的情况下给出了平行斜率(5.94±0.33和6.36±0.17 M(-0.5))。沉降数据证实了两种构象平衡混合物的存在,并且ADP、钙和离子强度的影响在定性上是一致的。因此,scHMM以两种构象存在,这两种构象可以通过沉降曲线和mant-ADP的释放速率来区分。盐浓度的增加使系统偏向开启状态,表明离子相互作用在稳定关闭状态中起作用。

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