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恶臭假单胞菌MET94中B型PpDyP及其远端变体的氧化还原和催化特性的综合观点。

An integrated view of redox and catalytic properties of B-type PpDyP from Pseudomonas putida MET94 and its distal variants.

作者信息

Mendes Sónia, Brissos Vânia, Gabriel Antonieta, Catarino Teresa, Turner David L, Todorovic Smilja, Martins Lígia O

机构信息

Instituto de Tecnologia Química e Biológica, Universidade Nova de Lisboa, Av. da República, 2780-157 Oeiras, Portugal.

Instituto de Tecnologia Química e Biológica, Universidade Nova de Lisboa, Av. da República, 2780-157 Oeiras, Portugal; Departamento de Química, Faculdade de Ciências e Tecnologia, Universidade Nova de Lisboa, 2829-516 Caparica, Portugal.

出版信息

Arch Biochem Biophys. 2015 May 15;574:99-107. doi: 10.1016/j.abb.2015.03.009. Epub 2015 Mar 20.

Abstract

PpDyP from Pseudomonas putida MET94 is an extremely versatile B-type dye-decolourising peroxidase (DyP) capable of efficient oxidation of a wide range of anthraquinonic and azo dyes, phenolic substrates, the non-phenolic veratryl alcohol and even manganese and ferrous ions. In reaction with H2O2 it forms a stable Compound I at a rate of (1.4±0.3)×10(6)M(-1)s(-1), comparable to those of classical peroxidases and other DyPs. We provide the first report of standard redox potential (E(0')) of the Compound I/Native redox couple in a DyP-type peroxidase. The value of E(0')Cpd I/N=1.10±0.04 (V) is similar to those found in peroxidases from the mammalian superfamily but higher than in peroxidases from the plant superfamily. Site-directed mutagenesis has been used to investigate the role of conserved distal residues, i.e. to replace aspartate 132 by asparagine, and arginine 214 and asparagine 136 by leucine. The structural, redox and catalytic properties of variants are addressed by spectroscopic, electrochemical and kinetic measurements. Our data point to the importance of the distal arginine in the catalytic mechanism of PpDyP, as also observed in DyPB from Rhodococcus jostii RHA1 but not in DyPs from the A and D subfamilies. This work reinforces the idea of existence of mechanistic variations among members of the different sub-families of DyPs with direct implications for their enzymatic properties and potential for biotechnological applications.

摘要

来自恶臭假单胞菌MET94的PpDyP是一种极其通用的B型染料脱色过氧化物酶(DyP),能够有效氧化多种蒽醌和偶氮染料、酚类底物、非酚类藜芦醇,甚至锰离子和亚铁离子。在与H2O2反应时,它以(1.4±0.3)×10(6)M(-1)s(-1)的速率形成稳定的化合物I,这与经典过氧化物酶和其他DyP相当。我们首次报道了DyP型过氧化物酶中化合物I/天然氧化还原对的标准氧化还原电位(E(0'))。E(0')Cpd I/N = 1.10±0.04(V)的值与哺乳动物超家族过氧化物酶中的值相似,但高于植物超家族过氧化物酶中的值。定点诱变已用于研究保守的远端残基的作用,即将天冬氨酸132替换为天冬酰胺,将精氨酸214和天冬酰胺136替换为亮氨酸。通过光谱、电化学和动力学测量来研究变体的结构、氧化还原和催化特性。我们的数据表明远端精氨酸在PpDyP催化机制中的重要性,这在约氏红球菌RHA1的DyPB中也有观察到,但在A和D亚家族的DyP中未观察到。这项工作强化了不同DyP亚家族成员之间存在机制差异的观点,这对它们的酶学性质和生物技术应用潜力有直接影响。

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