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Exploring representations of protein structure for automated remote homology detection and mapping of protein structure space

机译:探索用于自动远程同源性检测和蛋白质结构空间图谱分析的蛋白质结构表示

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摘要

BackgroundDue to rapid sequencing of genomes, there are now millions of deposited protein sequences with no known function. Fast sequence-based comparisons allow detecting close homologs for a protein of interest to transfer functional information from the homologs to the given protein. Sequence-based comparison cannot detect remote homologs, in which evolution has adjusted the sequence while largely preserving structure. Structure-based comparisons can detect remote homologs but most methods for doing so are too expensive to apply at a large scale over structural databases of proteins. Recently, fragment-based structural representations have been proposed that allow fast detection of remote homologs with reasonable accuracy. These representations have also been used to obtain linearly-reducible maps of protein structure space. It has been shown, as additionally supported from analysis in this paper that such maps preserve functional co-localization of the protein structure space.
机译:背景技术由于基因组的快速测序,现在有数百万个未知功能的保藏蛋白序列。基于序列的快速比较允许检测目标蛋白的紧密同源物,以将功能信息从同源物转移到给定的蛋白质。基于序列的比较无法检测到远程同源物,其中进化已在很大程度上保留结构的同时调整了序列。基于结构的比较可以检测远程同源物,但是大多数方法太昂贵,无法大规模应用于蛋白质的结构数据库。近来,已经提出了基于片段的结构表示,其允许以合理的精度快速检测远程同源物。这些表示也已用于获得蛋白质结构空间的线性可还原图。从本文的分析中可以进一步看出,这种图谱保留了蛋白质结构空间的功能性共定位。

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