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变化无常:黄素依赖性单加氧酶的进化

Chopping and Changing: the Evolution of the Flavin-dependent Monooxygenases.

作者信息

Mascotti Maria Laura, Juri Ayub Maximiliano, Furnham Nicholas, Thornton Janet M, Laskowski Roman A

机构信息

IMIBIO-SL CONICET, Facultad de Química Bioquímica y Farmacia, Universidad Nacional de San Luis, Ejército de los Andes 950, San Luis D5700HHW, Argentina.

IMIBIO-SL CONICET, Facultad de Química Bioquímica y Farmacia, Universidad Nacional de San Luis, Ejército de los Andes 950, San Luis D5700HHW, Argentina.

出版信息

J Mol Biol. 2016 Jul 31;428(15):3131-46. doi: 10.1016/j.jmb.2016.07.003. Epub 2016 Jul 14.

Abstract

Flavin-dependent monooxygenases play a variety of key physiological roles and are also very powerful biotechnological tools. These enzymes have been classified into eight different classes (A-H) based on their sequences and biochemical features. By combining structural and sequence analysis, and phylogenetic inference, we have explored the evolutionary history of classes A, B, E, F, and G and demonstrate that their multidomain architectures reflect their phylogenetic relationships, suggesting that the main evolutionary steps in their divergence are likely to have arisen from the recruitment of different domains. Additionally, the functional divergence within in each class appears to have been the result of other mechanisms such as a complex set of single-point mutations. Our results reinforce the idea that a main constraint on the evolution of cofactor-dependent enzymes is the functional binding of the cofactor. Additionally, a remarkable feature of this family is that the sequence of the key flavin adenine dinucleotide-binding domain is split into at least two parts in all classes studied here. We propose a complex set of evolutionary events that gave rise to the origin of the different classes within this family.

摘要

黄素依赖性单加氧酶发挥着多种关键的生理作用,同时也是非常强大的生物技术工具。这些酶根据其序列和生化特性已被分为八个不同的类别(A - H)。通过结合结构和序列分析以及系统发育推断,我们探索了A、B、E、F和G类的进化历史,并证明它们的多结构域架构反映了它们的系统发育关系,这表明它们分化过程中的主要进化步骤可能源于不同结构域的招募。此外,每个类别内的功能差异似乎是由其他机制导致的,例如一系列复杂的单点突变。我们的结果强化了这样一种观点,即对依赖辅因子的酶进化的一个主要限制是辅因子的功能性结合。此外,该家族的一个显著特征是,在此处研究的所有类别中,关键的黄素腺嘌呤二核苷酸结合结构域的序列至少被分成了两部分。我们提出了一组复杂的进化事件,这些事件导致了该家族内不同类别的起源。

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