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棕色固氮菌NifA的氨基末端GAF结构域在氮限制条件下结合2-氧代戊二酸以抵抗NifL的抑制作用。

The amino-terminal GAF domain of Azotobacter vinelandii NifA binds 2-oxoglutarate to resist inhibition by NifL under nitrogen-limiting conditions.

作者信息

Little Richard, Dixon Ray

机构信息

Department of Molecular Microbiology, John Innes Centre, Norwich NR4 7UH, United Kingdom.

出版信息

J Biol Chem. 2003 Aug 1;278(31):28711-8. doi: 10.1074/jbc.M301992200. Epub 2003 May 20.

Abstract

The expression of genes required for the synthesis of molybdenum nitrogenase in Azotobacter vinelandii is controlled by the NifL-NifA transcriptional regulatory complex in response to nitrogen, carbon, and redox status. Activation of nif gene expression by the transcriptional activator NifA is inhibited by direct protein-protein interaction with NifL under conditions unfavorable for nitrogen fixation. We have recently shown that the NifL-NifA system responds directly to physiological concentrations of 2-oxoglutarate, resulting in relief of NifA activity from inhibition by NifL under conditions when fixed nitrogen is limiting. The inhibitory activity of NifL is restored under conditions of excess combined nitrogen through the binding of the signal transduction protein Av GlnK to the carboxyl-terminal domain of NifL. The amino-terminal domain of NifA comprises a GAF domain implicated in the regulatory response to NifL. A truncated form of NifA lacking this domain is not responsive to 2-oxoglutarate in the presence of NifL, suggesting that the GAF domain is required for the response to this ligand. Using isothermal titration calorimetry, we demonstrate stoichiometric binding of 2-oxoglutarate to both the isolated GAF domain and the full-length A. vinelandii NifA protein with a dissociation constant of approximately 60 microm. Limited proteolysis experiments indicate that the binding of 2-oxoglutarate increases the susceptibility of the GAF domain to trypsin digestion and also prevents NifL from protecting these cleavage sites. However, protection by NifL is restored when the non-modified (non-uridylylated) form of Av GlnK is also present. Our results suggest that the binding of 2-oxoglutarate to the GAF domain of NifA may induce a conformational change that prevents inhibition by NifL under conditions when fixed nitrogen is limiting.

摘要

棕色固氮菌中钼铁固氮酶合成所需基因的表达受NifL-NifA转录调控复合体的控制,以响应氮、碳和氧化还原状态。在不利于固氮的条件下,转录激活因子NifA对nif基因表达的激活作用会因与NifL的直接蛋白质-蛋白质相互作用而受到抑制。我们最近发现,NifL-NifA系统直接响应生理浓度的2-氧代戊二酸,从而在固定氮有限的条件下使NifA的活性从NifL的抑制中得到缓解。在过量结合氮的条件下,通过信号转导蛋白Av GlnK与NifL羧基末端结构域的结合,NifL的抑制活性得以恢复。NifA的氨基末端结构域包含一个与对NifL的调控反应有关的GAF结构域。在存在NifL的情况下,缺少该结构域的NifA截短形式对2-氧代戊二酸没有反应,这表明GAF结构域是对该配体作出反应所必需的。通过等温滴定量热法,我们证明了2-氧代戊二酸与分离的GAF结构域和全长棕色固氮菌NifA蛋白的化学计量结合,解离常数约为60微摩尔。有限蛋白酶解实验表明,2-氧代戊二酸的结合增加了GAF结构域对胰蛋白酶消化的敏感性,同时也阻止了NifL对这些切割位点的保护。然而,当Av GlnK的未修饰(未尿苷酰化)形式也存在时,NifL的保护作用得以恢复。我们的结果表明,在固定氮有限的条件下,2-氧代戊二酸与NifA的GAF结构域的结合可能会诱导一种构象变化,从而防止NifL的抑制作用。

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