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组氨酸磷酸酶催化葡糖基-3-磷酸甘油酸去磷酸化的机制。

Mechanism of dephosphorylation of glucosyl-3-phosphoglycerate by a histidine phosphatase.

作者信息

Zheng Qianqian, Jiang Dunquan, Zhang Wei, Zhang Qingqing, Zhao Qi, Jin Jin, Li Xin, Yang Haitao, Bartlam Mark, Shaw Neil, Zhou Weihong, Rao Zihe

机构信息

From the College of Life Sciences, Nankai University, Tianjin 300071, China.

the Department of Molecular Biophysics and Biochemistry, Yale University, New Haven, Connecticut 06520-8114.

出版信息

J Biol Chem. 2014 Aug 1;289(31):21242-51. doi: 10.1074/jbc.M114.569913. Epub 2014 Jun 9.

Abstract

Mycobacterium tuberculosis (Mtb) synthesizes polymethylated polysaccharides that form complexes with long chain fatty acids. These complexes, referred to as methylglucose lipopolysaccharides (MGLPs), regulate fatty acid biosynthesis in vivo, including biosynthesis of mycolic acids that are essential for building the cell wall. Glucosyl-3-phosphoglycerate phosphatase (GpgP, EC 5.4.2.1), encoded by Rv2419c gene, catalyzes the second step of the pathway for the biosynthesis of MGLPs. The molecular basis for this dephosphorylation is currently not understood. Here, we describe the crystal structures of apo-, vanadate-bound, and phosphate-bound MtbGpgP, depicting unliganded, reaction intermediate mimic, and product-bound views of MtbGpgP, respectively. The enzyme consists of a single domain made up of a central β-sheet flanked by α-helices on either side. The active site is located in a positively charged cleft situated above the central β-sheet. Unambiguous electron density for vanadate covalently bound to His(11), mimicking the phosphohistidine intermediate, was observed. The role of residues interacting with the ligands in catalysis was probed by site-directed mutagenesis. Arg(10), His(11), Asn(17), Gln(23), Arg(60), Glu(84), His(159), and Leu(209) are important for enzymatic activity. Comparison of the structures of MtbGpgP revealed conformational changes in a key loop region connecting β1 with α1. This loop regulates access to the active site. MtbGpgP functions as dimer. L209E mutation resulted in monomeric GpgP, rendering the enzyme incapable of dephosphorylation. The structures of GpgP reported here are the first crystal structures for histidine-phosphatase-type GpgPs. These structures shed light on a key step in biosynthesis of MGLPs that could be targeted for development of anti-tuberculosis therapeutics.

摘要

结核分枝杆菌(Mtb)合成与长链脂肪酸形成复合物的多甲基化多糖。这些复合物,称为甲基葡萄糖脂多糖(MGLPs),在体内调节脂肪酸生物合成,包括对构建细胞壁至关重要的分枝菌酸的生物合成。由Rv2419c基因编码的葡糖基-3-磷酸甘油酸磷酸酶(GpgP,EC 5.4.2.1)催化MGLPs生物合成途径的第二步。目前尚不清楚这种去磷酸化的分子基础。在这里,我们描述了无配体、钒酸盐结合和磷酸盐结合的MtbGpgP的晶体结构,分别描绘了MtbGpgP的无配体、反应中间体模拟物和产物结合视图。该酶由一个单一结构域组成,该结构域由中央β-折叠组成,两侧各有一个α-螺旋。活性位点位于中央β-折叠上方的带正电荷的裂隙中。观察到与His(11)共价结合的钒酸盐的明确电子密度,模拟磷酸组氨酸中间体。通过定点诱变研究了与配体相互作用的残基在催化中的作用。Arg(10)、His(11)、Asn(17)、Gln(23)、Arg(60)、Glu(84)、His(159)和Leu(209)对酶活性很重要。MtbGpgP结构的比较揭示了连接β1和α1的关键环区域的构象变化。该环调节对活性位点的访问。MtbGpgP以二聚体形式发挥作用。L209E突变导致单体GpgP,使该酶无法进行去磷酸化。这里报道的GpgP结构是组氨酸磷酸酶型GpgP的首个晶体结构。这些结构揭示了MGLPs生物合成中的一个关键步骤,可以作为抗结核治疗药物开发的靶点。

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