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OALib Journal期刊
ISSN: 2333-9721
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The Progress on Electron Transport Pathway and Catalytic Mechanism of Copper-containing Nitrite Reductase
铜型亚硝酸还原酶的电子传递模式及催化机理研究进展

Keywords: Copper-containing nitrite reductases,Electron transfer,Catalytic mechanism,Denitrification
铜型亚硝酸还原酶
,电子传递,催化机理,生物脱氮,亚硝酸还原酶,电子传递过程,传递模式,催化机理,研究进展,Reductase,Nitrite,Mechanism,Catalytic,Pathway,Electron,Transport,阐述,系统,结构特点,结合,催化反应,结构变化,残基,催化过程,原子

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Abstract:

Nitrite reductases (NiRs) are the key enzymes in the denitrification pathway of the nitrogen cycle. By the catalysis of NiRs, the nitrites are turned into nitric oxides and the nitrogen pollution is decreased in water body. NiRs are divided into two different types based on their prosthetic groups, namely heme-containing nitrite reductases (cd1-NiRs) and Copper-containing nitrite reductases (Cu-NiRs). As all know, Cu-NiRs have trimeric structures, in their each monomer, there exist two types of Cu centers that play pivotal roles as the components of electron transfer pathway in the process of catalysis. Furthermore, some residues alteration of Cu-NiRs would contribute to the catalytic reaction. In this review, the latest progresses about the construction features, the process of electron transfer and catalytic mechanism of Cu-NiRs were discussed.

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