Structure of Mycobacterium tuberculosis phosphatidylinositol phosphate synthase reveals mechanism of substrate binding and metal catalysis

被引:0
|
作者
Kristīne Grāve
Matthew D. Bennett
Martin Högbom
机构
[1] Stockholm University,Department of Biochemistry and Biophysics
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Tuberculosis causes over one million yearly deaths, and drug resistance is rapidly developing. Mycobacterium tuberculosis phosphatidylinositol phosphate synthase (PgsA1) is an integral membrane enzyme involved in biosynthesis of inositol-derived phospholipids required for formation of the mycobacterial cell wall, and a potential drug target. Here we present three crystal structures of M. tuberculosis PgsA1: in absence of substrates (2.9 Å), in complex with Mn2+ and citrate (1.9 Å), and with the CDP-DAG substrate (1.8 Å). The structures reveal atomic details of substrate binding as well as coordination and dynamics of the catalytic metal site. In addition, molecular docking supported by mutagenesis indicate a binding mode for the second substrate, D-myo-inositol-3-phosphate. Together, the data describe the structural basis for M. tuberculosis phosphatidylinositol phosphate synthesis and suggest a refined general catalytic mechanism—including a substrate-induced carboxylate shift—for Class I CDP-alcohol phosphotransferases, enzymes essential for phospholipid biosynthesis in all domains of life.
引用
收藏
相关论文
共 50 条
  • [41] Purification and characterization of Mycobacterium tuberculosis indole-3-glycerol phosphate synthase
    Yanping Yang
    Min Zhang
    Hongmei Zhang
    Jianqiang Lei
    Ruiliang Jin
    Shengfeng Xu
    Jialing Bao
    Lu Zhang
    Honghai Wang
    Biochemistry (Moscow), 2006, 71 : S38 - S43
  • [42] Purification and characterization of Mycobacterium tuberculosis indole-3-glycerol phosphate synthase
    Yang, YP
    Zhang, M
    Zhang, HM
    Lei, JQ
    Jin, RL
    Xu, SF
    Bao, JL
    Zhang, L
    Wang, HH
    BIOCHEMISTRY-MOSCOW, 2006, 71 (Suppl 1) : S38 - S43
  • [43] Substrate binding is the rate-limiting step in thromboxane synthase catalysis
    Wang, LH
    Tsai, AL
    Hsu, PY
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2001, 276 (18) : 14737 - 14743
  • [44] The crystal structure of Mycobacterium thermoresistibile MurE ligase reveals the binding mode of the substrate m-diaminopimelate
    Rossini, Nicolas de Oliveira
    Silva, Catharina
    Dias, Marcio Vinicius Bertacine
    JOURNAL OF STRUCTURAL BIOLOGY, 2023, 215 (02)
  • [45] The crystal structure of AcrR from Mycobacterium tuberculosis reveals a one-component transcriptional regulation mechanism
    Kang, Sung-Min
    Kim, Do-Hee
    Jin, Chenglong
    Ahn, Hee-Chul
    Lee, Bong-Jin
    FEBS OPEN BIO, 2019, 9 (10): : 1713 - 1725
  • [46] The crystal structure of Escherichia coli spermidine synthase SpeE reveals a unique substrate-binding pocket
    Zhou, Xingding
    Chua, Teck Khiang
    Tkaczuk, Karolina L.
    Bujnicki, Janusz M.
    Sivaraman, J.
    JOURNAL OF STRUCTURAL BIOLOGY, 2010, 169 (03) : 277 - 285
  • [47] The structure of the Mycobacterium smegmatis trehalose synthase reveals an unusual active site configuration and acarbose-binding mode†
    Caner, Sami
    Nham Nguyen
    Aguda, Adeleke
    Zhang, Ran
    Pan, Yuan T.
    Withers, Stephen G.
    Brayer, Gary D.
    GLYCOBIOLOGY, 2013, 23 (09) : 1075 - 1083
  • [48] Amino-acid substitutions at the domain interface affect substrate and allosteric inhibitor binding in α-isopropylmalate synthase from Mycobacterium tuberculosis
    Huisman, Frances H. A.
    Squire, Christopher J.
    Parker, Emily J.
    BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2013, 433 (02) : 249 - 254
  • [49] Computational insights into substrate binding and catalytic mechanism of the glutaminase domain of glucosamine-6-phosphate synthase (GlmS)
    Wei, Wanlei
    Monard, Gerald
    Gauld, James W.
    RSC ADVANCES, 2017, 7 (47) : 29626 - 29638
  • [50] Metal ions binding to recA inteins from Mycobacterium tuberculosis
    Zhang, Liyun
    Zheng, Yuchuan
    Xi, Zhaoyong
    Luo, Zhaofeng
    Xu, Xiaolong
    Wang, Chunyu
    Liu, Yangzhong
    MOLECULAR BIOSYSTEMS, 2009, 5 (06) : 644 - 650