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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Fungal denitrification and nitric oxide reductase cytochrome P450nor
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Fungal denitrification and nitric oxide reductase cytochrome P450nor

机译:真菌反硝化和一氧化氮还原酶细胞色素P450nor

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We have shown that many fungi (eukaryotes) exhibit distinct denitrifying activities, although occurrence of denitrification was previously thought to be restricted to bacteria (prokaryotes), and have characterized the fungal denitrification system. It comprises NirK (copper-containing nitrite reductase) and P450nor (a cytochrome P450 nitric oxide (NO) reductase (Nor)) to reduce nitrite to nitrous oxide (N_2O). The system is localized in mitochondria functioning during anaerobic respiration. Some fungal systems further contain and use dissimilatory and assimilatory nitrate reductases to denitrify nitrate. Phylogenetic analysis of nirK genes showed that the fungal-denitrifying system has the same ancestor as the bacterial counterpart and suggested a possibility of its proto-mitochondrial origin. By contrast, fungi that have acquired a P450 from bacteria by horizontal transfer of the gene, modulated its function to give a Nor activity replacing the original Nor with P450nor. P450nor receives electrons directly from nicotinamide adenine dinucleotide to reduce NO to N_2O. The mechanism of this unprecedented electron transfer has been extensively studied and thoroughly elucidated. Fungal denitrification is often accompanied by a unique phenomenon, co-denitrification, in which a hybridN_2 orN_2Ospecies is formed upon the combination of nitrogen atoms of nitrite with a nitrogen donor (amines and imines). Possible involvement of NirK and P450nor is suggested.
机译:我们已经表明,尽管以前认为反硝化的发生仅限于细菌(原核生物),但许多真菌(真核生物)均表现出独特的反硝化活性,并具有真菌反硝化系统的特征。它包含NirK(含铜亚硝酸盐还原酶)和P450nor(细胞色素P450一氧化氮(NO)还原酶(Nor))以将亚硝酸盐还原为一氧化二氮(N_2O)。该系统位于厌氧呼吸过程中的线粒体功能中。一些真菌系统还包含并使用异化和同化硝酸盐还原酶使硝酸盐反硝化。对nirK基因的系统进化分析表明,真菌去硝化系统与细菌对应的祖先具有相同的祖先,并提示其可能是线粒体起源的。相比之下,通过水平转移基因从细菌中获得P450的真菌,调节其功能使其具有Nor活性,用P450nor代替了原来的Nor。 P450也不能直接从烟酰胺腺嘌呤二核苷酸接收电子,将NO还原为N_2O。这种空前的电子转移的机理已被广泛研究和彻底阐明。真菌反硝化通常伴随一种独特的现象,即共反硝化作用,其中亚硝酸盐的氮原子与氮供体(胺和亚胺)的结合会形成杂种N_2或N_2O。建议NirK和P450nor可能参与其中。

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