首页> 外文期刊>Archives of microbiology >ORGANIZATION AND REGULATION OF GENES ENCODING THE MOLYBDENUM NITROGENASE AND THE ALTERNATIVE NITROGENASE IN RHODOBACTER CAPSULATUS [Review]
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ORGANIZATION AND REGULATION OF GENES ENCODING THE MOLYBDENUM NITROGENASE AND THE ALTERNATIVE NITROGENASE IN RHODOBACTER CAPSULATUS [Review]

机译:红PS鱼中编码钼氮酶和交替氮酶的基因的组织和调控[综述]

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The phototrophic non-sulfur purple bacterium Rhodobacter capsulatus is able to fix atmospheric dinitrogen either via a conventional molybdenum nitrogenase or via an alternative iron-only nitrogenase. At least 53 genes are involved in the synthesis and regulation of these two nitrogenase systems, most of which are clustered in four regions widely spread in the genome. Expression of both nitrogenase systems is regulated at the transcriptional level by NifR1 and NifR2, homologues of NtrC and NtrB, respectively. However, this ntr system is only involved in the regulation of the two nitrogenase systems and the high-affinity molybdenum transport system and is not required for utilization of other N sources such as proline and arginine. In contrast to enteric bacteria, the R. capsulatus NtrC homologue does not act in concert with the alternative sigma factor RpoN (sigma(54)). Nitrogen fixation in R. capsulatus is regulated at the transcriptional level and also at the post-translational level. The draTG gene products are responsible for covalent modification of the dinitrogenase reductases of both nitrogenase systems. In addition, mutations in hvrA, a gene previously described as being responsible for low-light activation of the photosynthetic apparatus, also affect regulation of nitrogen fixation. [References: 89]
机译:光养性非硫紫色荚膜红细菌能够通过常规的钼固氮酶或通过另一种纯铁固氮酶固定大气中的二氮。至少有53个基因参与了这两个固氮酶系统的合成和调控,其中大多数聚集在基因组中广泛分布的四个区域中。两种固氮酶系统的表达在转录水平上分别受NtrR和NtrB的同源物NifR1和NifR2调控。然而,该ntr系统仅参与两个固氮酶系统和高亲和力钼转运系统的调节,而对于其他N源如脯氨酸和精氨酸的利用不是必需的。与肠细菌相反,荚膜衣原体的NtrC同源物与替代的σ因子RpoN(σ(54))不协同作用。荚膜红球菌的固氮作用在转录水平和翻译后水平均受到调控。 draTG基因产物负责两个固氮酶系统中双氮酶还原酶的共价修饰。另外,hvrA(先前描述为负责光合作用装置的弱光激活的基因)中的突变也影响了氮固定的调节。 [参考:89]

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