Little Richard, Colombo Victoria, Leech Andrew, Dixon Ray
Department of Molecular Microbiology, John Innes Centre, Norwich NR4 7UH, United Kingdom.
J Biol Chem. 2002 May 3;277(18):15472-81. doi: 10.1074/jbc.M112262200. Epub 2002 Feb 20.
The Azotobacter vinelandii NifL-NifA regulatory system integrates metabolic signals for redox, energy, and nitrogen status to fine tune regulation of the synthesis of molybdenum nitrogenase. The NifL protein utilizes discrete mechanisms to perceive these signals leading to the formation of a protein-protein complex, which inhibits NifA activity. Whereas redox signaling is mediated via a flavin-containing PAS domain in the N-terminal region of NifL, the nitrogen status is sensed via interaction with PII-like signal transduction proteins and small molecular weight effectors. The nonuridylylated form of the PII-like protein encoded by A. vinelandii glnK (Av GlnK) stimulates NifL to inhibit transcriptional activation by NifA in vitro. Here we demonstrate that the nonmodified form of Av GlnK directly interacts with A. vinelandii NifL and that this interaction is dependent on Mg(2+), ATP, and 2-oxoglutarate. Differences were observed in the regulation of the Av GlnK-NifL interaction by 2-oxoglutarate compared with the role of this effector in modulating the interaction of enteric PII-like proteins with their receptors. We also report that the interaction between Av GlnK and NifL is abolished by site-directed substitution of a single amino acid in the T-loop region of Av GlnK and that uridylylation of the conserved tyrosine residue in the T-loop inhibits the interaction. No association was detected between Av GlnK and the N-terminal region of NifL and our results demonstrate that Av GlnK directly interacts with the C-terminal histidine protein kinase-like domain.
棕色固氮菌的NifL-NifA调控系统整合了氧化还原、能量和氮状态的代谢信号,以微调钼固氮酶合成的调控。NifL蛋白利用离散机制感知这些信号,导致形成一种蛋白质-蛋白质复合物,从而抑制NifA活性。氧化还原信号通过NifL N端区域含黄素的PAS结构域介导,而氮状态则通过与类PII信号转导蛋白和小分子效应物的相互作用来感知。棕色固氮菌glnK(Av GlnK)编码的类PII蛋白的非尿苷酸化形式在体外刺激NifL抑制NifA的转录激活。在这里,我们证明了Av GlnK的未修饰形式直接与棕色固氮菌NifL相互作用,并且这种相互作用依赖于Mg(2+)、ATP和2-氧代戊二酸。与该效应物在调节肠道类PII蛋白与其受体相互作用中的作用相比,观察到2-氧代戊二酸对Av GlnK-NifL相互作用的调节存在差异。我们还报告说,Av GlnK T环区域中单个氨基酸的定点取代消除了Av GlnK与NifL之间的相互作用,并且T环中保守酪氨酸残基的尿苷酸化抑制了这种相互作用。未检测到Av GlnK与NifL N端区域之间的关联我们的结果表明,Av GlnK直接与C端组氨酸蛋白激酶样结构域相互作用。