首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >A crucial arginine residue is required for a conformational switch in NifL to regulate nitrogen fixation in Azotobacter vinelandii.
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A crucial arginine residue is required for a conformational switch in NifL to regulate nitrogen fixation in Azotobacter vinelandii.

机译:NifL中的构象转换需要关键的精氨酸残基,以调节葡萄固氮菌中的固氮作用。

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摘要

NifL is an antiactivator that tightly regulates transcription of genes required for nitrogen fixation in Azotobacter vinelandii by controlling the activity of its partner protein NifA, a member of the family of sigma(54)-dependent transcriptional activators. Although the C-terminal region of A. vinelandii NifL shows homology to the transmitter domains of histidine protein kinases, signal transduction between NifL and NifA is conveyed by means of protein-protein interactions rather than by phosphorylation. Binding of the ligand 2-oxoglutarate to NifA plays a crucial role in preventing inhibition by NifL under conditions appropriate for nitrogen fixation. We have used a suppressor screen to identify a critical arginine residue (R306) in NifL that is required to release NifA from inhibition under appropriate environmental conditions. Amino acid substitutions at position 306 result in constitutive inhibition of NifA activity by NifL, thus preventing nitrogen fixation. Biochemical studies with one of the mutant proteins demonstrate that the substitution alters the conformation of NifL significantly and prevents the response of NifA to 2-oxoglutarate. We propose that arginine 306 is critical for the propagation of signals perceived by A. vinelandii NifL in response to the redox and fixed-nitrogen status and is required for a conformational switch that inactivates the inhibitory function of NifL under conditions appropriate for nitrogen fixation.
机译:NifL是一种抗激活剂,可通过控制其伴侣蛋白NifA(依赖sigma(54)的转录激活因子家族的成员)的活性来紧密调节藤蔓固氮菌中固氮所需的基因的转录。尽管葡萄曲霉NifL的C端区域与组氨酸蛋白激酶的递质结构域具有同源性,但NifL和NifA之间的信号转导是通过蛋白质-蛋白质相互作用而不是通过磷酸化来传达的。在适合固氮的条件下,配体2-氧戊二酸酯与NifA的结合在防止NifL抑制中起着至关重要的作用。我们使用了抑制子筛选技术来鉴定NifL中的关键精氨酸残基(R306),该残基是在适当的环境条件下释放NifA的抑制作用所必需的。位置306处的氨基酸取代导致NifL组成型抑制NifA活性,从而防止固氮。用一种突变蛋白进行的生化研究表明,该取代显着改变了NifL的构象,并阻止了NifA对2-氧戊二酸的反应。我们提出,精氨酸306对于由A.vinelandii NifL感知的信号的传播是至关重要的,该信号响应氧化还原和固定氮状态,并且是构象开关所必需的,其在适合固氮的条件下使NifL的抑制功能失活。

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