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荚膜红细菌中细胞色素c'催化的一氧化氮的酶促去除。

Enzymatic removal of nitric oxide catalyzed by cytochrome c' in Rhodobacter capsulatus.

作者信息

Cross R, Lloyd D, Poole R K, Moir J W

机构信息

Department of Molecular Biology and Biotechnology, University of Sheffield, Western Bank, Sheffield S10 2TN, United Kingdom.

出版信息

J Bacteriol. 2001 May;183(10):3050-4. doi: 10.1128/JB.183.10.3050-3054.2001.

Abstract

Cytochrome c' from Rhodobacter capsulatus has been shown to confer resistance to nitric oxide (NO). In this study, we demonstrated that the amount of cytochrome c' synthesized for buffering of NO is insufficient to account for the resistance to NO but that the cytochrome-dependent resistance mechanism involves the catalytic breakdown of NO, under aerobic and anaerobic conditions. Even under aerobic conditions, the NO removal is independent of molecular oxygen, suggesting cytochrome c' is a NO reductase. Indeed, we have measured the product of NO breakdown to be nitrous oxide (N(2)O), thus showing that cytochrome c' is behaving as a NO reductase. The increased resistance to NO conferred by cytochrome c' is distinct from the NO reductase pathway that is involved in denitrification. Cytochrome c' is not required for denitrification, but it has a role in the removal of externally supplied NO. Cytochrome c' synthesis occurs aerobically and anaerobically but is partly repressed under denitrifying growth conditions when other NO removal systems are operative. The inhibition of respiratory oxidase activity of R. capsulatus by NO suggests that one role for cytochrome c' is to maintain oxidase activity when both NO and O(2) are present.

摘要

来自荚膜红细菌的细胞色素c'已被证明具有抗一氧化氮(NO)的能力。在本研究中,我们证明,为缓冲NO而合成的细胞色素c'的量不足以解释其对NO的抗性,但细胞色素依赖性抗性机制涉及在有氧和无氧条件下NO的催化分解。即使在有氧条件下,NO的去除也不依赖于分子氧,这表明细胞色素c'是一种NO还原酶。事实上,我们已测得NO分解的产物为一氧化二氮(N₂O),从而表明细胞色素c'表现为一种NO还原酶。细胞色素c'赋予的对NO抗性增加不同于参与反硝化作用的NO还原酶途径。反硝化作用不需要细胞色素c',但它在去除外部供应的NO中起作用。细胞色素c'的合成在有氧和无氧条件下均会发生,但在反硝化生长条件下,当其他NO去除系统起作用时,其合成会受到部分抑制。NO对荚膜红细菌呼吸氧化酶活性的抑制表明,细胞色素c'的一个作用是在同时存在NO和O₂时维持氧化酶活性。

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