从生化角度看蛋白质的虚拟相互作用组学。

Molecular biology international Pub Date : 2012-01-01 Epub Date: 2012-08-08 DOI:10.1155/2012/976385
Jaroslav Kubrycht, Karel Sigler, Pavel Souček
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引用次数: 6

摘要

虚拟交互学代表了生物信息学和交互学边界线上一个快速发展的科学领域。蛋白质相关的虚拟相互作用包括用于预测、模拟和联网大多数相互作用的工具,这些相互作用对细胞和生物体的结构和个体繁殖、分化、识别、信号传导、调节和代谢途径很重要。在这里,我们描述了虚拟蛋白质相互作用的主要领域,即基于结构的功能重要相互作用位点的比较分析和预测、模拟表位辅助和组合表位预测、分子(蛋白质)对接研究以及蛋白质相互作用网络的研究。我们的表格中显示了一些有趣的方法和在线可访问程序或数据库的详细信息。本文的相当一部分涉及对常见的保守或功能趋同的蛋白质区域和保守相互作用网络的子图的搜索、新的突出趋势和临床上有趣的结果。与所提供的数据和关系一致,虚拟交互原子工具提高了我们的科学知识,帮助我们制定可行的假设,而且它们经常在计算机模拟中发挥各种重要作用。
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Virtual interactomics of proteins from biochemical standpoint.

Virtual interactomics represents a rapidly developing scientific area on the boundary line of bioinformatics and interactomics. Protein-related virtual interactomics then comprises instrumental tools for prediction, simulation, and networking of the majority of interactions important for structural and individual reproduction, differentiation, recognition, signaling, regulation, and metabolic pathways of cells and organisms. Here, we describe the main areas of virtual protein interactomics, that is, structurally based comparative analysis and prediction of functionally important interacting sites, mimotope-assisted and combined epitope prediction, molecular (protein) docking studies, and investigation of protein interaction networks. Detailed information about some interesting methodological approaches and online accessible programs or databases is displayed in our tables. Considerable part of the text deals with the searches for common conserved or functionally convergent protein regions and subgraphs of conserved interaction networks, new outstanding trends and clinically interesting results. In agreement with the presented data and relationships, virtual interactomic tools improve our scientific knowledge, help us to formulate working hypotheses, and they frequently also mediate variously important in silico simulations.

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