Silva Catarina S, Damas João M, Chen Zhenjia, Brissos Vânia, Martins Lígia O, Soares Cláudio M, Lindley Peter F, Bento Isabel
Instituto de Tecnologia Química e Biológica, Universidade Nova de Lisboa, Avenida da Republica, 2780-157 Oeiras, Portugal.
Acta Crystallogr D Biol Crystallogr. 2012 Feb;68(Pt 2):186-93. doi: 10.1107/S0907444911054503. Epub 2012 Jan 17.
Multi-copper oxidases constitute a family of proteins that are capable of coupling the one-electron oxidation of four substrate equivalents to the four-electron reduction of dioxygen to two molecules of water. The main catalytic stages occurring during the process have already been identified, but several questions remain, including the nature of the protonation events that take place during the reductive cleavage of dioxygen to water. The presence of a structurally conserved acidic residue (Glu498 in CotA laccase from Bacillus subtilis) at the dioxygen-entrance channel has been reported to play a decisive role in the protonation mechanisms, channelling protons during the reduction process and stabilizing the site as a whole. A second acidic residue that is sequentially conserved in multi-copper oxidases and sited within the exit channel (Asp116 in CotA) has also been identified as being important in the protonation process. In this study, CotA laccase has been used as a model system to assess the role of Asp116 in the reduction process of dioxygen to water. The crystal structures of three distinct mutants, D116E, D116N and D116A, produced by site-saturation mutagenesis have been determined. In addition, theoretical calculations have provided further support for a role of this residue in the protonation events.
多铜氧化酶构成了一类蛋白质家族,这类蛋白质能够将四个底物等价物的单电子氧化与氧气的四电子还原偶联起来,生成两分子水。该过程中发生的主要催化阶段已经得到确认,但仍存在一些问题,包括在氧气还原裂解生成水的过程中发生的质子化事件的本质。据报道,在氧气进入通道处存在一个结构保守的酸性残基(来自枯草芽孢杆菌的 CotA 漆酶中的 Glu498),它在质子化机制中起决定性作用,在还原过程中引导质子,并稳定整个位点。在多铜氧化酶中顺序保守且位于出口通道内的第二个酸性残基(CotA 中的 Asp116)也被确定在质子化过程中很重要。在本研究中,CotA 漆酶被用作模型系统,以评估 Asp116 在氧气还原生成水的过程中的作用。通过位点饱和诱变产生的三个不同突变体 D116E、D116N 和 D116A 的晶体结构已被确定。此外,理论计算为该残基在质子化事件中的作用提供了进一步的支持。