Structure and Mechanism of Copper- and Nickel-Substituted Analogues of Metallo-β-lactamase L1

被引:19
|
作者
Hu, Zhenxin [1 ]
Spadafora, Lauren J. [1 ]
Hajdin, Christine E. [1 ]
Bennett, Brian [2 ]
Crowder, Michael W. [1 ]
机构
[1] Miami Univ, Dept Chem & Biochem, Oxford, OH 45056 USA
[2] Med Coll Wisconsin, Dept Biophys, Natl Biomed EPR Ctr, Milwaukee, WI 53226 USA
基金
美国国家卫生研究院;
关键词
SITE-DIRECTED MUTAGENESIS; STENOTROPHOMONAS-MALTOPHILIA; AEROMONAS-PROTEOLYTICA; GLYOXALASE-II; BACTEROIDES-FRAGILIS; MOLECULAR-STRUCTURE; SUBSTRATE-BINDING; ACTIVE-SITES; IN-VIVO; AMINOPEPTIDASE;
D O I
10.1021/bi802295z
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
In an effort to further probe metal binding to metallo-beta-lactamase L1 (m beta 1 L1), Cu- (Cu-L1) and Ni-substituted (Ni-L1) L1 were prepared and characterized by kinetic and spectroscopic studies. Cu-L1 bound 1.7 equiv of Cu and small amounts of Zn(II) and Fe. The EPR spectrum of Cu-L1 exhibited two overlapping, axial signals, indicative of type 2 sites with distinct affinities for Cu(II). Both. signals indicated multiple nitrogen ligands. Despite the expected proximity of the Cu(II) ions, however, only indirect evidence was found for spin-spin coupling. Cu-L1 exhibited higher k(cat) (96 s(-1)) and K-m (224 mu M) values, as compared to the values of dinuclear Zn(II)-containing L1, when nitrocefin was used as substrate. The Ni-L1 bound 1 equiv of Ni and 0.3 equiv of Zn(II). Ni-L1 was EPR-silent, suggesting that the oxidation state of nickel was +2; this suggestion was confirmed by H-1 NMR spectra, which showed relatively sharp proton resonances. Stopped-flow kinetic studies showed that ZnNi-L1 stabilized significant amounts of the nitrocefin-derived intermediate and that the decay of intermediate is rate-limiting. H-1 NMR spectra demonstrate that Ni(II) binds in the Zn-2 site and that the ring-opened product coordinates Ni(II). Both Cu-L1 and ZnNi-L1 hydrolyze cephalosporins and carbapenems, but not penicillins, suggesting that the Zn-2 site modulates substrate preference in m beta 1 L1. These studies demonstrate that the Zn-2 site in L1 is very flexible and can accommodate a number of different transition metal ions; this flexibility could possibly offer an organism that produces L1 an evolutionary advantage when challenged with beta-lactam-containing antibiotics.
引用
收藏
页码:2981 / 2989
页数:9
相关论文
共 50 条
  • [1] Kinetic mechanism of metallo-β-lactamase L1 from Stenotrophomonas maltophilia
    McManus-Munoz, S
    Crowder, MW
    BIOCHEMISTRY, 1999, 38 (05) : 1547 - 1553
  • [2] Folding strategy to prepare Co(II)-substituted metallo-β-lactamase L1
    Hu, Zhenxin
    Periyannan, Gopal R.
    Crowder, Michael W.
    ANALYTICAL BIOCHEMISTRY, 2008, 378 (02) : 177 - 183
  • [3] Metallo-β-lactamase:: structure and mechanism
    Wang, ZG
    Fast, W
    Valentine, AM
    Benkovic, SJ
    CURRENT OPINION IN CHEMICAL BIOLOGY, 1999, 3 (05) : 614 - 622
  • [4] Molecular mechanism of nitrocefin hydrolysis by the L1 metallo-β-lactamase: a benchmark study
    Krivitskaya, Alexandra V.
    Polyakov, Igor V.
    Khrenova, Maria G.
    MOLECULAR PHYSICS, 2025,
  • [5] Novel mechanism of hydrolysis of therapeutic β-lactams by Stenotrophomonas maltophilia L1 metallo-β-lactamase
    Spencer, J
    Clarke, AR
    Walsh, TR
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2001, 276 (36) : 33638 - 33644
  • [6] The crystal structure of the L1 metallo-β-lactamase from Stenotrophomonas maltophilia at 1.7 Å resolution
    Ullah, JH
    Walsh, TR
    Taylor, IA
    Emery, DC
    Verma, CS
    Gamblin, SJ
    Spencer, J
    JOURNAL OF MOLECULAR BIOLOGY, 1998, 284 (01) : 125 - 136
  • [7] Time-Resolved -lactam Cleavage by L1 Metallo-β-Lactamase
    Joachimiak, Andrzej
    Wilamowski, Mateusz
    Sherrell, Darren
    Kim, Youngchang
    Lavens, Alex
    Henning, Robert
    Lazarski, Krzysztof
    Endres, Michael
    Maltseva, Natalia
    Babnigg, Gyorgy
    Burdette, Shawn
    Srajer, Vukica
    ACTA CRYSTALLOGRAPHICA A-FOUNDATION AND ADVANCES, 2022, 78 : A86 - A86
  • [8] Time-resolved β-lactam cleavage by L1 metallo-β-lactamase
    Wilamowski, M.
    Sherrell, D. A.
    Kim, Y.
    Lavens, A.
    Henning, R. W.
    Lazarski, K.
    Shigemoto, A.
    Endres, M.
    Maltseva, N.
    Babnigg, G.
    Burdette, S. C.
    Srajer, V.
    Joachimiak, A.
    NATURE COMMUNICATIONS, 2022, 13 (01)
  • [9] Optimization of amino acid thioesters as inhibitors of metallo-β-lactamase L1
    Liu, Xiao-Long
    Yang, Ke-Wu
    Zhang, Yue-Juan
    Ge, Ying
    Xiang, Yang
    Chang, Ya-Nan
    Oelschlaeger, Peter
    BIOORGANIC & MEDICINAL CHEMISTRY LETTERS, 2016, 26 (19) : 4698 - 4701
  • [10] Time-resolved β-lactam cleavage by L1 metallo-β-lactamase
    M. Wilamowski
    D. A. Sherrell
    Y. Kim
    A. Lavens
    R. W. Henning
    K. Lazarski
    A. Shigemoto
    M. Endres
    N. Maltseva
    G. Babnigg
    S. C. Burdette
    V. Srajer
    A. Joachimiak
    Nature Communications, 13