4.6 Article

Regulation of nif expression in Methanococcus maripaludis -: Roles of the euryarchaeal repressor NrpR, 2-oxoglutarate, and two operators

Journal

JOURNAL OF BIOLOGICAL CHEMISTRY
Volume 280, Issue 7, Pages 5236-5241

Publisher

AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC
DOI: 10.1074/jbc.M411778200

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Funding

  1. NIGMS NIH HHS [GM-55255] Funding Source: Medline

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The methanogenic archaean Methanococcus maripaludis can use ammonia, alanine, or dinitrogen as a nitrogen source for growth. The euryarchaeal nitrogen repressor NrpR controls the expression of the nif (nitrogen fixation) operon, resulting in full repression with ammonia, intermediate repression with alanine, and derepression with dinitrogen. NrpR binds to two tandem operators in the nif promoter region, nifOR(1) and nifOR(2). Here we have undertaken both in vivo and in vitro approaches to study the way in which NrpR, nifOR(1) nifOR(2), and the effector 2-oxoglutarate (20G) combine to regulate nif expression, leading to a comprehensive understanding of this archaeal regulatory system. We show that NrpR binds as a dimer to nifOR(1) and cooperatively as two dimers to both operators. Cooperative binding occurs only with both operators present. nifOR(1) has stronger binding and by itself can mediate the repression of nif transcription during growth on ammonia, unlike the weakly binding nifOR2. However, nifOR2 in combination with nifOR(1) is critical for intermediate repression during growth on alanine. Accordingly, NrpR binds to both operators together with higher affinity than to nifOR(1) alone. NrpR responds directly to 20G, which weakens its binding to the operators. Hence, 20G is an intracellular indicator of nitrogen deficiency and acts as an inducer of nif transcription via NrpR. This model is upheld by the recent finding (J. A. Dodsworth and J. A. Leigh, submitted for publication) in our laboratory that 20G levels in M. maripaludis vary with growth on different nitrogen sources.

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