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FixingTIM: Interactive exploration of sequence and structural data to identify functional mutations in protein families

机译:FixingTIM:交互探索序列和结构数据,以鉴定蛋白质家族中的功能突变

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摘要

© 2014 Luciani et al.; licensee BioMed Central Ltd. Background: Knowledge of the 3D structure and functionality of proteins can lead to insight into the associated cellular processes, speed up the creation of pharmaceutical products, and develop drugs that are more effective in combating disease. Methods: We present the design and implementation of a visual mining and analysis tool to help identify protein mutations across a family of structural models and to help discover the effect of these mutations on protein function. We integrate 3D structure and sequence information in a common visual interface; multiple linked views and a computational backbone allow comparison at the molecular and atomic levels, while a novel trend-image visual abstraction allows for the sorting and mining of large collections of sequences and of their residues. Results: We evaluate our approach on the triosephosphate isomerase (TIM) family structural models and sequence data and show that our tool provides an effective, scalable way to navigate a family of proteins, as well as a means to inspect the structure and sequence of individual proteins. Conclusions: The TIM application shows that our tool can assist in the navigation of families of proteins, as well as in the exploration of individual protein structures. In conjunction with domain expert knowledge, this interactive tool can help provide biophysical insight into why specific mutations affect function and potentially suggest additional modifications to the protein that could be used to rescue functionality.
机译:©2014 Luciani等;被许可人BioMed Central Ltd.背景:蛋白质的3D结构和功能的知识可以导致深入了解相关的细胞过程,加快药物产品的生产,并开发出更有效的抗病药物。方法:我们介绍了可视化挖掘和分析工具的设计和实现,以帮助识别整个结构模型家族中的蛋白质突变,并帮助发现这些突变对蛋白质功能的影响。我们将3D结构和序列信息整合到一个通用的可视界面中;多个链接的视图和一个计算主干可以在分子和原子水平进行比较,而新颖的趋势图像可视化抽象则可以对大量序列及其残基进行分类和挖掘。结果:我们评估了磷酸三糖异构酶(TIM)家族结构模型和序列数据的方法,并表明我们的工具提供了一种有效的,可扩展的方法来浏览蛋白质家族,并提供了一种检查个体结构和序列的方法蛋白质。结论:TIM应用程序表明,我们的工具可以协助蛋白质家族的导航以及单个蛋白质结构的探索。结合领域专家的知识,该交互式工具可以帮助您提供生物物理学的见解,以了解为什么特定突变会影响功能,并可能建议对蛋白质进行其他修饰以拯救功能。

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