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Structural updates of alignment of protein domains and consequences on evolutionary models of domain superfamilies

机译:蛋白质结构域比对的结构更新及其对结构域超家族进化模型的影响

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Background Influx of newly determined crystal structures into primary structural databases is increasing at a rapid pace. This leads to updation of primary and their dependent secondary databases which makes large scale analysis of structures even more challenging. Hence, it becomes essential to compare and appreciate replacement of data and inclusion of new data that is critical between two updates. PASS2 is a database that retains structure-based sequence alignments of protein domain superfamilies and relies on SCOP database for its hierarchy and definition of superfamily members. Since, accurate alignments of distantly related proteins are useful evolutionary models for depicting variations within protein superfamilies, this study aims to trace the changes in data in between PASS2 updates. Results In this study, differences in superfamily compositions, family constituents and length variations between different versions of PASS2 have been tracked. Studying length variations in protein domains, which have been introduced by indels (insertions/deletions), are important because theses indels act as evolutionary signatures in introducing variations in substrate specificity, domain interactions and sometimes even regulating protein stability. With this objective of classifying the nature and source of variations in the superfamilies during transitions (between the different versions of PASS2), increasing length-rigidity of the superfamilies in the recent version is observed. In order to study such length-variant superfamilies in detail, an improved classification approach is also presented, which divides the superfamilies into distinct groups based on their extent of length variation. Conclusions An objective study in terms of transition between the database updates, detailed investigation of the new/old members and examination of their structural alignments is non-trivial and will help researchers in designing experiments on specific superfamilies, in various modelling studies, in linking representative superfamily members to rapidly expanding sequence space and in evaluating the effects of length variations of new members in drug target proteins. The improved objective classification scheme developed here would be useful in future for automatic analysis of length variation in cases of updates of databases or even within different secondary databases.
机译:背景技术新确定的晶体结构涌入初级结构数据库的速度正在迅速增加。这导致主数据库及其从属数据库的更新,这使得对结构的大规模分析更具挑战性。因此,比较和欣赏数据的替换以及包含两次更新之间至关重要的新数据变得至关重要。 PASS2是一个数据库,可保留蛋白质域超家族的基于结构的序列比对,并依赖于SCOP数据库来提供其超家族成员的层次结构和定义。由于远距离相关蛋白质的精确比对是描述蛋白质超家族内部变异的有用进化模型,因此本研究旨在追踪PASS2更新之间数据的变化。结果在这项研究中,已跟踪了不同版本的PASS2之间的超家族组成,家族组成和长度变异的差异。研究由插入/缺失(插入/缺失)引入的蛋白质结构域的长度变化非常重要,因为这些插入/缺失在引入底物特异性,结构域相互作用甚至调节蛋白质稳定性方面起着进化的作用。出于对过渡期间(在PASS2的不同版本之间)超家族的变化的性质和来源进行分类的目的,在最近的版本中,观察到超家族的长度刚度增加。为了详细研究此类长度变异的超家族,还提出了一种改进的分类方法,该方法根据长度变异的程度将超家族分为不同的组。结论在数据库更新之间的过渡,对新/旧成员的详细研究以及对它们的结构排列进行检查方面的客观研究是不简单的,它将帮助研究人员在各种建模研究中设计特定超家族的实验,从而将代表联系起来。超家族成员,以快速扩展序列空间并评估药物靶蛋白中新成员的长度变异的影响。在数据库更新的情况下,甚至在不同的辅助数据库中,此处开发的改进的目标分类方案在将来对长度变化的自动分析将很有用。

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