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结合态ts3对钠通道失活转变的电压依赖性及其解离能量学的影响。

Effects of bound ts3 on voltage dependence of sodium channel transitions to and from inactivation and energetics of its unbinding.

作者信息

Campos Fabiana V, Beirão Paulo S L

机构信息

Department of Biochemistry and Immunology, Instituto de Ciências Biológicas, Universidade Federal de Minas Gerais, Caixa Postal 486, CEP 30161-970 Belo Horizonte, MG, Brazil.

出版信息

Cell Biochem Biophys. 2006;44(3):424-30. doi: 10.1385/CBB:44:3:424.

Abstract

Recently, we proposed a quantitative model to explain the molecular mechanism of action of the Tityus serrulatus Ts3 alpha-toxin on sodium channels. In this model, the toxin acts as a stop that prevents the segment S4 of domain IV from reaching its outermost position, thus impairing the normal fast inactivation without affecting activation. In the present work, we analyze the predictions of the proposed model with regard to the voltage-dependent transitions to and from inactivation. Our results show that the recovery from inactivation was significantly faster in Ts3-bound channels and that there was no significant voltage dependence. The transition to inactivated state from open state in Ts3-modified channels presented a small but significant voltage dependence, which may derive from an intrinsic voltage dependence of inactivation or by a short movement of IVS4 in the presence of bound Ts3. We also studied the thermodynamic parameters of the voltage-dependent displacement of Ts3 from its binding site. We have observed that the activation energy to remove the toxin is 27 kJ/mol, part of which derives from the imposed depolarizing potential and the movement of an equivalent electrical charge of 0.54 e(0). These results support the proposed model.

摘要

最近,我们提出了一个定量模型来解释锯齿蝎毒素Ts3α-毒素对钠通道的分子作用机制。在这个模型中,毒素起到一个阻碍作用,阻止结构域IV的S4片段到达其最外侧位置,从而损害正常的快速失活而不影响激活。在本研究中,我们分析了所提出的模型关于电压依赖性失活转变和从失活恢复的预测。我们的结果表明,在结合了Ts3的通道中,从失活状态恢复的速度明显更快,并且不存在明显的电压依赖性。在Ts3修饰的通道中,从开放状态到失活状态的转变呈现出小但显著的电压依赖性,这可能源于失活的内在电压依赖性或在结合了Ts3的情况下IVS4的短距离移动。我们还研究了Ts3从其结合位点的电压依赖性位移的热力学参数。我们观察到去除毒素的活化能为27 kJ/mol,其中一部分源于施加的去极化电位和0.54 e(0)的等效电荷移动。这些结果支持了所提出的模型。

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