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Structural basis for nitrous oxide generation by bacterial nitric oxide reductases

机译:细菌一氧化氮还原酶产生一氧化二氮的结构基础

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摘要

The crystal structure of the bacterial nitric oxide reductase (cNOR) from Pseudomonas aeruginosa is reported. Its overall structure is similar to those of the main subunit of aerobic and micro-aerobic cytochrome oxidases (COXs), in agreement with the hypothesis that all these enzymes are members of the haem-copper oxidase superfamily. However, substantial structural differences between cNOR and COX are observed in the catalytic centre and the delivery pathway of the catalytic protons, which should be reflected in functional differences between these respiratory enzymes. On the basis of the cNOR structure, we propose a possible reaction mechanism of nitric oxide reduction to nitrous oxide as a working hypothesis.
机译:据报道,铜绿假单胞菌细菌一氧化氮还原酶(cNOR)的晶体结构。它的整体结构类似于需氧和微需氧细胞色素氧化酶(COXs)的主要亚基的结构,这与所有这些酶都是血红铜氧化酶超家族成员的假设相一致。然而,在催化中心和催化质子的传递途径中观察到了cNOR和COX之间的实质性结构差异,这应反映在这些呼吸酶之间的功能差异中。基于cNOR结构,我们提出了将一氧化氮还原成一氧化二氮的可能反应机理的假设。

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