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Molecular biology and biochemistry of ammonia oxidation by Nitrosomonas europaea [Review]

机译:欧洲硝化亚硝化氨氧化的分子生物学和生物化学[综述]

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Nitrosomonas europaea uses only NH3, CO2 and mineral salts for growth and as such it is an obligate chemo-lithoautotroph. The oxidation of NH3 is a two-step process catalyzed by ammonia monooxygenase (AMO) and hydroxylamine oxidoreductase (HAO). AMO catalyzes the oxidation of NH3 to NH2OH and HAO catalyzes the oxidation of NH2OH to NO2-. AMO is a membrane-bound enzyme composed of three subunits. HAO is located in the periplasm and is a homotrimer with each subunit containing eight c-type hemes. The electron flow from HAO is channeled through cytochrome c(554) to cytochrome c(m552), where it is partitioned for further utilization. Among the ammonia-oxidizing bacteria, the genes for AMO, these cytochromes, and HAO are present in up to three highly similar copies. Mutants with mutations in the copies of amoCAB and hao in N. europaea have been isolated. All of the amoCAB and hao gene copies are functional. N. europaea was selected by the United States Department of Energy for a whole-genome sequencing project. In this article, we review recent research on the molecular biology and biochemistry of NH3 oxidation in nitrifiers. [References: 51]
机译:欧洲亚硝化单胞菌仅使用NH3,CO2和无机盐来生长,因此它是专性化石自养生物。 NH3的氧化是由氨单加氧酶(AMO)和羟胺氧化还原酶(HAO)催化的两步过程。 AMO催化NH3氧化为NH2OH,而HAO催化NH2OH氧化为NO2-。 AMO是由三个亚基组成的膜结合酶。 HAO位于周质中,是同三聚体,每个亚基均包含8个c型血红素。来自HAO的电子流通过细胞色素c(554)传导至细胞色素c(m552),在此处进行分配以进一步利用。在氨氧化细菌中,AMO,这些细胞色素和HAO的基因最多存在三个高度相似的副本。已分离出欧洲念珠菌amoCAB和hao拷贝中具有突变的突变体。所有的amoCAB和hao基因拷贝均具有功能。欧洲猪笼草被美国能源部选中用于全基因组测序项目。在本文中,我们回顾了硝化器中NH3氧化的分子生物学和生物化学的最新研究。 [参考:51]

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