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细菌HPr激酶/磷酸酶V267F突变体的结构分析为这种双功能酶的变构调节机制提供了见解。

Structural analysis of the bacterial HPr kinase/phosphorylase V267F mutant gives insights into the allosteric regulation mechanism of this bifunctional enzyme.

作者信息

Chaptal Vincent, Vincent Fanny, Gueguen-Chaignon Virginie, Monedero Vicente, Poncet Sandrine, Deutscher Josef, Nessler Sylvie, Morera Solange

机构信息

Laboratoire d'Enzymologie et Biochimie Structurales, CNRS, 1 Avenue de Terrasse, 91198 Gif-sur Yvette, France.

出版信息

J Biol Chem. 2007 Nov 30;282(48):34952-7. doi: 10.1074/jbc.M705979200. Epub 2007 Sep 18.

DOI:10.1074/jbc.M705979200
PMID:17878158
Abstract

The HPr kinase/phosphorylase (HPrK/P) is a bifunctional enzyme that controls the phosphorylation state of the phospho-carrier protein HPr, which regulates the utilization of carbon sources in Gram-positive bacteria. It uses ATP or pyrophosphate for the phosphorylation of serine 46 of HPr and inorganic phosphate for the dephosphorylation of Ser(P)-46-HPr via a phosphorolysis reaction. HPrK/P is a hexameric protein kinase of a new type with a catalytic core belonging to the family of nucleotide-binding protein with Walker A motif. It exhibits no structural similarity to eukaryotic protein kinases. So far, HPrK/P structures have shown the enzyme in its phosphorylase conformation. They permitted a detailed characterization of the phosphorolysis mechanism. In the absence of a structure with bound nucleotide, we used the V267F mutant enzyme to assess the kinase conformation. Indeed, the V267F replacement was found to cause an almost entire loss of the phosphorylase activity of Lactobacillus casei HPrK/P. In contrast, the kinase activity remained conserved. To elucidate the structural alterations leading to this drastic change of activity, the x-ray structure of the catalytic domain of L. casei HPrK/P-V267F was determined at 2.6A resolution. A comparison with the structure of the wild type enzyme showed that the mutation induces conformation changes compatible with the switch from phosphorylase to kinase function. Together with nucleotide binding fluorescence measurements, these results allowed us to decipher the cooperative behavior of the protein and to gain new insights into the allosteric regulation mechanism of HPrK/P.

摘要

HPr激酶/磷酸化酶(HPrK/P)是一种双功能酶,可控制磷酸载体蛋白HPr的磷酸化状态,从而调节革兰氏阳性菌中碳源的利用。它利用ATP或焦磷酸对HPr的丝氨酸46进行磷酸化,并通过磷酸解反应利用无机磷酸使Ser(P)-46-HPr去磷酸化。HPrK/P是一种新型的六聚体蛋白激酶,其催化核心属于具有沃克A基序的核苷酸结合蛋白家族。它与真核蛋白激酶没有结构相似性。到目前为止,HPrK/P的结构显示该酶处于磷酸化酶构象。这些结构使人们能够详细表征磷酸解机制。在没有结合核苷酸的结构的情况下,我们使用V267F突变酶来评估激酶构象。实际上,发现V267F替换几乎完全丧失了干酪乳杆菌HPrK/P的磷酸化酶活性。相比之下,激酶活性保持不变。为了阐明导致这种活性剧烈变化的结构改变,我们以2.6埃的分辨率测定了干酪乳杆菌HPrK/P-V267F催化结构域的X射线结构。与野生型酶的结构比较表明,该突变诱导的构象变化与从磷酸化酶功能向激酶功能的转变相一致。结合核苷酸结合荧光测量,这些结果使我们能够解读该蛋白的协同行为,并对HPrK/P的变构调节机制有了新的认识。

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