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Assessing the relationship between conservation of function and conservation of sequence using photosynthetic proteins

机译:使用光合蛋白评估功能保守性和序列保守性之间的关系

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Motivation: Assessing the false positive rate of function prediction methods is difficult, as it is hard to establish that a protein does not have a certain function. To determine to what extent proteins with similar sequences have a common function, we focused on photosynthesis-related proteins. A protein that comes from a non-photosynthetic organism is, undoubtedly, not involved in photosynthesis. Results: We show that function diverges very rapidly: 70% of the close homologs of photosynthetic proteins come from non-photosynthetic organisms. Therefore, high sequence similarity, in most cases, is not tantamount to similar function. However, we found that many functionally similar proteins often share short sequence elements, which may correspond to a functional site and could reveal functional similarities more accurately than sequence similarity. Conclusions: These results shed light on the way biological function is conserved in evolution and may help improve large-scale analysis of protein function.
机译:动机:很难评估功能预测方法的假阳性率,因为很难确定蛋白质不具有某种功能。为了确定具有相似序列的蛋白质在何种程度上具有共同的功能,我们集中在光合作用相关的蛋白质上。毫无疑问,来自非光合作用生物的蛋白质不参与光合作用。结果:我们显示功能差异非常大:光合作用蛋白的70%紧密同源物来自非光合作用生物。因此,在大多数情况下,高序列相似性不等于相似功能。但是,我们发现许多功能相似的蛋白质通常共享短序列元件,这可能对应于功能位点,并且比序列相似性更准确地揭示了功能相似性。结论:这些结果揭示了生物学功能在进化中保守的方式,可能有助于改善蛋白质功能的大规模分析。

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