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Quantitative Comparison of Catalytic Mechanisms and Overall Reactions in Convergently Evolved Enzymes: Implications for Classification of Enzyme Function

机译:聚合进化酶的催化机理和整体反应的定量比较:酶功能分类的意义

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Functionally analogous enzymes are those that catalyze similar reactions on similar substrates but do not share common ancestry, providing a window on the different structural strategies nature has used to evolve required catalysts. Identification and use of this information to improve reaction classification and computational annotation of enzymes newly discovered in the genome projects would benefit from systematic determination of reaction similarities. Here, we quantified similarity in bond changes for overall reactions and catalytic mechanisms for 95 pairs of functionally analogous enzymes (non-homologous enzymes with identical first three numbers of their EC codes) from the MACiE database. Similarity of overall reactions was computed by comparing the sets of bond changes in the transformations from substrates to products. For similarity of mechanisms, sets of bond changes occurring in each mechanistic step were compared; these similarities were then used to guide global and local alignments of mechanistic steps. Using this metric, only 44% of pairs of functionally analogous enzymes in the dataset had significantly similar overall reactions. For these enzymes, convergence to the same mechanism occurred in 33% of cases, with most pairs having at least one identical mechanistic step. Using our metric, overall reaction similarity serves as an upper bound for mechanistic similarity in functional analogs. For example, the four carbon-oxygen lyases acting on phosphates (EC 4.2.3) show neither significant overall reaction similarity nor significant mechanistic similarity. By contrast, the three carboxylic-ester hydrolases (EC 3.1.1) catalyze overall reactions with identical bond changes and have converged to almost identical mechanisms. The large proportion of enzyme pairs that do not show significant overall reaction similarity (56%) suggests that at least for the functionally analogous enzymes studied here, more stringent criteria could be used to refine definitions of EC sub-subclasses for improved discrimination in their classification of enzyme reactions. The results also indicate that mechanistic convergence of reaction steps is widespread, suggesting that quantitative measurement of mechanistic similarity can inform approaches for functional annotation.
机译:功能类似的酶是那些在相似的底物上催化相似反应但不具有共同血统的酶,这为自然界用来发展所需催化剂的不同结构策略提供了一个窗口。鉴定和使用该信息以改善反应分类和基因组计划中新发现的酶的计算注释,将受益于系统地确定反应相似性。在这里,我们从MACiE数据库中量化了95对功能相似的酶(其EC码的前三个数字相同的非同源酶)的整体反应和催化机理的键变化相似性。通过比较从底物到产物的转化中的键变化组,计算出总体反应的相似性。对于机制的相似性,比较了每个机械步骤中发生的键变化集;这些相似性随后被用来指导机械步骤的整体和局部对齐。使用该度量,数据集中只有44%的功能类似酶对具有总体相似的总体反应。对于这些酶,在33%的情况下会收敛到相同的机制,大多数对具有至少一个相同的机理步骤。使用我们的度量标准,总体反应相似性是功能类似物的机械相似性的上限。例如,作用于磷酸盐的四种碳氧裂解酶(EC 4.2.3)既没有显示出明显的整体反应相似性,也没有显示出显着的机理相似性。相比之下,三种羧酸酯水解酶(EC 3.1.1)催化具有相同键变化的整体反应,并已收敛到几乎相同的机理。大部分未显示出明显总体反应相似性的酶对(56%)表明,至少对于此处研究的功能类似的酶,更严格的标准可用于完善EC亚类的定义,以改善其分类中的区分度酶反应。结果还表明反应步骤的机理收敛是广泛的,这表明机理相似性的定量测量可以为功能注释方法提供信息。

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