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拟南芥中PII对N-乙酰谷氨酸激酶调控的结构基础。

Structural basis for the regulation of N-acetylglutamate kinase by PII in Arabidopsis thaliana.

作者信息

Mizuno Yutaka, Moorhead Greg B G, Ng Kenneth K-S

机构信息

Department of Biological Sciences and the Alberta Ingenuity Centre for Carbohydrate Science, University of Calgary, Calgary, Alberta T2N 1N4, Canada.

出版信息

J Biol Chem. 2007 Dec 7;282(49):35733-40. doi: 10.1074/jbc.M707127200. Epub 2007 Oct 3.

Abstract

PII is a highly conserved regulatory protein found in organisms across the three domains of life. In cyanobacteria and plants, PII relieves the feedback inhibition of the rate-limiting step in arginine biosynthesis catalyzed by N-acetylglutamate kinase (NAGK). To understand the molecular structural basis of enzyme regulation by PII, we have determined a 2.5-A resolution crystal structure of a complex formed between two homotrimers of PII and a single hexamer of NAGK from Arabidopsis thaliana bound to the metabolites N-acetylglutamate, ADP, ATP, and arginine. In PII, the T-loop and Trp(22) at the start of the alpha1-helix, which are both adjacent to the ATP-binding site of PII, contact two beta-strands as well as the ends of two central helices (alphaE and alphaG) in NAGK, the opposing ends of which form major portions of the ATP and N-acetylglutamate substrate-binding sites. The binding of Mg(2+).ATP to PII stabilizes a conformation of the T-loop that favors interactions with both open and closed conformations of NAGK. Interactions between PII and NAGK appear to limit the degree of opening and closing of the active-site cleft in opposition to a domain-separating inhibitory effect exerted by arginine, thus explaining the stimulatory effect of PII on the kinetics of arginine-inhibited NAGK.

摘要

PII是一种高度保守的调节蛋白,存在于生命三界的各种生物体中。在蓝细菌和植物中,PII可解除由N - 乙酰谷氨酸激酶(NAGK)催化的精氨酸生物合成限速步骤的反馈抑制。为了理解PII对酶的调节的分子结构基础,我们确定了拟南芥中PII的两个同三聚体与NAGK的一个单六聚体形成的复合物的晶体结构,该复合物结合了代谢物N - 乙酰谷氨酸、ADP、ATP和精氨酸,分辨率为2.5埃。在PII中,α1 - 螺旋起始处的T环和Trp(22)均与PII的ATP结合位点相邻,它们与NAGK中的两条β链以及两个中央螺旋(αE和αG)的末端接触,而这两个中央螺旋的相对末端构成了ATP和N - 乙酰谷氨酸底物结合位点的主要部分。Mg(2 +).ATP与PII的结合稳定了T环的一种构象,这种构象有利于与NAGK的开放和关闭构象相互作用。PII与NAGK之间的相互作用似乎限制了活性位点裂隙的打开和关闭程度,这与精氨酸施加的结构域分离抑制作用相反,从而解释了PII对精氨酸抑制的NAGK动力学的刺激作用。

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