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首页> 外文期刊>Physiological Reviews >Computational methods of studying the binding of toxins from venomous animals to biological ion channels: theory and applications.
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Computational methods of studying the binding of toxins from venomous animals to biological ion channels: theory and applications.

机译:研究有毒动物毒素与生物离子通道结合的计算方法:理论与应用。

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摘要

The discovery of new drugs that selectively block or modulate ion channels has great potential to provide new treatments for a host of conditions. One promising avenue revolves around modifying or mimicking certain naturally occurring ion channel modulator toxins. This strategy appears to offer the prospect of designing drugs that are both potent and specific. The use of computational modeling is crucial to this endeavor, as it has the potential to provide lower cost alternatives for exploring the effects of new compounds on ion channels. In addition, computational modeling can provide structural information and theoretical understanding that is not easily derivable from experimental results. In this review, we look at the theory and computational methods that are applicable to the study of ion channel modulators. The first section provides an introduction to various theoretical concepts, including force-fields and the statistical mechanics of binding. We then look at various computational techniques available to the researcher, including molecular dynamics, Brownian dynamics, and molecular docking systems. The latter section of the review explores applications of these techniques, concentrating on pore blocker and gating modifier toxins of potassium and sodium channels. After first discussing the structural features of these channels, and their modes of block, we provide an in-depth review of past computational work that has been carried out. Finally, we discuss prospects for future developments in the field.
机译:选择性阻断或调节离子通道的新药物的发现具有为多种疾病提供新疗法的巨大潜力。一种有前途的途径围绕修饰或模仿某些天然存在的离子通道调节剂毒素。该策略似乎为设计有效且特异的药物提供了前景。计算模型的使用对于这一努力至关重要,因为它有可能为探索新化合物对离子通道的影响提供低成本的替代方案。另外,计算建模可以提供结构信息和理论上的理解,而这些信息很难从实验结果中得出。在这篇综述中,我们将研究适用于离子通道调节剂研究的理论和计算方法。第一部分介绍了各种理论概念,包括力场和约束的统计机制。然后,我们研究研究人员可用的各种计算技术,包括分子动力学,布朗动力学和分子对接系统。这篇评论的后一部分探讨了这些技术的应用,重点是钾和钠通道的孔阻断剂和门控修饰剂毒素。在首先讨论了这些通道的结构特征及其阻塞模式之后,我们对已进行的过去的计算工作进行了深入的回顾。最后,我们讨论该领域的未来发展前景。

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