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古菌嗜热脂肪芽孢杆菌三聚体 P(II)蛋白 GlnK2 中 MgATP 和 MgADP 的协同结合。

Cooperative binding of MgATP and MgADP in the trimeric P(II) protein GlnK2 from Archaeoglobus fulgidus.

机构信息

Institut für organische Chemieund Biochemie, Albert-Ludwigs-Universität Freiburg, Albertstr.21, 79104 Freiburg, Germany.

出版信息

J Mol Biol. 2010 Sep 10;402(1):165-77. doi: 10.1016/j.jmb.2010.07.020. Epub 2010 Jul 17.

Abstract

P(II)-like proteins, such as GlnK, found in a wide variety of organisms from prokaryotes to plants constitute a family of cytoplasmic signaling proteins that play a central regulatory role in the assimilation of nitrogen for biosyntheses. They specifically bind and are modulated by effector molecules such as adenosine triphosphate, adenosine diphosphate and 2-oxoglutarate. Their highly conserved, trimeric structure suggests that cooperativity in effector binding might be the basis for the ability to integrate and respond to a wide range of concentrations, but to date no direct quantification of this cooperative behavior has been presented. The hyperthermophilic archaeon Archaeoglobus fulgidus contains three GlnK proteins, functionally associated with ammonium transport proteins (Amt). We have characterized GlnK2 and its interaction with effectors by high-resolution X-ray crystallography and isothermal titration calorimetry. Binding of adenosine nucleotides resulted in distinct, cooperative behavior for ATP and ADP. While 2-oxoglutarate has been shown to interact with other GlnK proteins, GlnK2 was completely insensitive to this key indicator of a low level of intracellular nitrogen. These findings point to different regulation and modulation patterns and add to our understanding of the flexibility and versatility of the GlnK family of signaling proteins.

摘要

P(II)-样蛋白,如 GlnK,存在于从原核生物到植物等各种生物体中,构成了一类细胞质信号蛋白家族,在氮素同化用于生物合成中发挥着核心调控作用。它们特异性地结合并被效应分子如三磷酸腺苷(ATP)、二磷酸腺苷(ADP)和 2-氧戊二酸调节。它们高度保守的三聚体结构表明,在效应分子结合中的协同作用可能是整合和响应广泛浓度范围的能力的基础,但迄今为止,尚未直接提出这种协同行为的定量描述。嗜热古菌 Archaeoglobus fulgidus 含有三种 GlnK 蛋白,它们与铵转运蛋白(Amt)功能相关。我们通过高分辨率 X 射线晶体学和等温热滴定法对 GlnK2 及其与效应分子的相互作用进行了表征。腺苷核苷酸的结合导致了 ATP 和 ADP 的明显协同作用。虽然 2-氧戊二酸已被证明与其他 GlnK 蛋白相互作用,但 GlnK2 对这个低细胞内氮水平的关键指示物完全不敏感。这些发现指出了不同的调节和调制模式,并增加了我们对 GlnK 家族信号蛋白的灵活性和多功能性的理解。

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