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模式E调节产甲烷菌嗜乙酸甲烷八叠球菌中的替代固氮酶表达。

ModE Regulates Alternative Nitrogenase Expression in the Methanogen Methanosarcina acetivorans.

作者信息

Chanderban Melissa, Lessner Daniel J

机构信息

Department of Biological Sciences, University of Arkansas-Fayetteville, Fayetteville, Arkansas, USA.

出版信息

Mol Microbiol. 2025 Aug;124(2):105-114. doi: 10.1111/mmi.15377. Epub 2025 May 12.

Abstract

All methanogens that can fix nitrogen use molybdenum (Mo) nitrogenase. Some methanogens, including Methanosarcina acetivorans , also contain alternative vanadium- and iron-nitrogenases, encoded by the vnf and anf operons, respectively. These nitrogenases are produced when there is insufficient Mo to support Mo-nitrogenase activity. The factors that control the expression of the alternative nitrogenases in response to Mo availability are unknown in methanogens. Here we show that ModE is the regulator that represses transcription of the vnf and anf operons in M. acetivorans when cells are grown with Mo. CRISPRi repression of modE results in a significant increase in the transcription of the vnf and anf operons as well as the detection of Fe-nitrogenase during nitrogen fixation in the presence of Mo. Gel shift assays with recombinant ModE demonstrated that ModE binds a specific sequence motif upstream of the vnf and anf operons, as well as other genes and operons related to nitrogen fixation and Mo transport. However, purified ModE does not contain Mo, and the addition of Mo does not alter the affinity of ModE for DNA, indicating M. acetivorans ModE may not directly bind Mo. This study shows that ModE is the primary Mo-responsive regulator of alternative nitrogenase expression in M. acetivorans , but other factor(s) are likely involved in directly sensing Mo.

摘要

所有能够固定氮的产甲烷菌都使用钼(Mo)固氮酶。一些产甲烷菌,包括嗜乙酸甲烷八叠球菌,还含有分别由vnf和anf操纵子编码的替代性钒固氮酶和铁固氮酶。当钼不足以支持钼固氮酶活性时,就会产生这些固氮酶。在产甲烷菌中,响应钼的可利用性而控制替代性固氮酶表达的因素尚不清楚。在这里,我们表明,当细胞在有钼的情况下生长时,ModE是抑制嗜乙酸甲烷八叠球菌中vnf和anf操纵子转录的调节因子。CRISPRi对modE的抑制导致vnf和anf操纵子的转录显著增加,并且在有钼存在的固氮过程中检测到了铁固氮酶。用重组ModE进行的凝胶迁移实验表明,ModE结合在vnf和anf操纵子上游的一个特定序列基序,以及与固氮和钼转运相关的其他基因和操纵子。然而,纯化的ModE不含钼,添加钼也不会改变ModE对DNA的亲和力,这表明嗜乙酸甲烷八叠球菌ModE可能不直接结合钼。这项研究表明,ModE是嗜乙酸甲烷八叠球菌中替代性固氮酶表达的主要钼响应调节因子,但可能有其他因素参与直接感知钼。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0563/12327845/bd15bea06b87/MMI-124-105-g005.jpg

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