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knotin 的结构与建模,一种有前途的药物发现分子支架。

Structure and modeling of knottins, a promising molecular scaffold for drug discovery.

机构信息

Centre de Biochimie Structurale, CNRS UMR 5048 - UM 1 - INSERM UMR 1054, 29 rue de Navacelles 34090, MONTPELLIER Cedex, France.

出版信息

Curr Pharm Des. 2011 Dec;17(38):4337-50. doi: 10.2174/138161211798999339.

Abstract

The knottins are extremely stable miniproteins present in many species and are able to perform various tasks. Owing to its small size and its amazing stability, the knottin structural domain is considered as an excellent scaffold for drug development. Several recent databases and web servers dedicated to or aware of knottins have appeared and are shortly described. Altogether they provide a valuable ensemble of data and of specific tools that greatly facilitate knottin-based studies. The essential structural features of the knottin scaffold, which heavily rest on the three knotted disulfide bridges for its stability, are reviewed. These include small but well-conserved secondary structures and hydrogen bonding networks, but also several further interactions that have been shown to be essential for stability and/or activity. Examples are supplementary disulfide bridges, side chain hydrogen bonds, or circularization. General structure prediction and modeling tools are not well fitted to knottins, and several specific tools have been developed. Specifically, methods to assign a disulfide connectivity pattern to small disulfide-rich sequences or to build accurate 3D models of knottins are available and are discussed in the review. Although more works are still needed to better understand sequence-structure-function relationships, recent studies strongly suggest that existing applications of knottins as drugs (i.e. painkillers), molecules for diagnosis, or insecticidal crop treatment should rapidly generalize and extend to other fields as well, e.g. as antimicrobials.

摘要

该 knottins 是极其稳定的小分子蛋白存在于许多物种,并能执行各种任务。由于其体积小,其惊人的稳定性,该 knottin 结构域被认为是一个极好的药物开发的支架。几个最近的数据库和网络服务器专门或意识到 knottins 已经出现,并简要描述。总的来说,它们提供了一个有价值的集合的数据和特定的工具,大大方便了基于 knottin 的研究。该 essential 结构特征的 knottin 支架,这严重依赖于三个结的二硫键的稳定性,进行了审查。其中包括小,但保存完好的二级结构和氢键网络,但也有几个进一步的相互作用,已被证明是稳定和/或活性的重要组成部分。例子是补充的二硫键,侧链氢键,或圆形。一般结构预测和建模工具不太适合 knottins,并开发了几个特定的工具。具体地说,方法来分配一个二硫键连接模式的小的二硫键丰富的序列或构建准确的 3D 模型的 knottins是可用的,并在审查中讨论。虽然更多的工作仍需要更好地理解序列结构功能关系,最近的研究强烈表明,现有的应用 knottins 作为药物(即止痛药),用于诊断的分子,或杀虫作物处理应迅速推广和扩展到其他领域,例如作为抗菌剂。

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