Isopenicillin N Synthase: Crystallographic Studies

被引:7
作者
Chapman, Nicole C. [1 ]
Rutledge, Peter J. [1 ]
机构
[1] Univ Sydney, Sch Chem, Sydney, NSW 2006, Australia
关键词
antibiotics; beta-lactams; biosynthesis; enzyme mechanisms; non-heme iron; oxidases; DEPSIPEPTIDE SUBSTRATE-ANALOG; X-RAY DIFFRACTION; CRYSTAL-STRUCTURE; PENICILLIN BIOSYNTHESIS; BETA-LACTAM; PROTEIN ENVIRONMENT; DIOXYGEN ACTIVATION; ENZYMATIC-SYNTHESIS; OXYGEN-BINDING; ENZYMES;
D O I
10.1002/cbic.202000743
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
Isopenicillin N synthase (IPNS) is a non-heme iron oxidase (NHIO) that catalyses the cyclisation of tripeptide delta-(l-alpha-aminoadipoyl)-l-cysteinyl-d-valine (ACV) to bicyclic isopenicillin N (IPN). Over the last 25 years, crystallography has shed considerable light on the mechanism of IPNS catalysis. The first crystal structure, for apo-IPNS with Mn bound in place of Fe at the active site, reported in 1995, was also the first structure for a member of the wider NHIO family. This was followed by the anaerobic enzyme-substrate complex IPNS-Fe-ACV (1997), this complex plus nitric oxide as a surrogate for co-substrate dioxygen (1997), and an enzyme product complex (1999). Since then, crystallography has been used to probe many aspects of the IPNS reaction mechanism, by crystallising the protein with a diversity of substrate analogues and triggering the oxidative reaction by using elevated oxygen pressures to force the gaseous co-substrate throughout protein crystals and maximise synchronicity of turnover in crystallo. In this way, X-ray structures have been elucidated for a range of complexes closely related to and/or directly derived from key intermediates in the catalytic cycle, thereby answering numerous mechanistic questions that had arisen from solution-phase experiments, and posing many new ones. The results of these crystallographic studies have, in turn, informed computational experiments that have brought further insight. These combined crystallographic and computational investigations augment and extend the results of earlier spectroscopic analyses and solution phase studies of IPNS turnover, to enrich our understanding of this important protein and the wider NHIO enzyme family.
引用
收藏
页码:1687 / 1705
页数:19
相关论文
共 50 条
  • [21] Structural studies on the reaction of isopenicillin N synthase with the substrate analogue δ-(L-α-aminoadipoyl)-L-cysteinyl-D-α-aminobutyrate
    Long, AJ
    Clifton, IJ
    Roach, PL
    Baldwin, JE
    Schofield, CJ
    Rutledge, PJ
    BIOCHEMICAL JOURNAL, 2003, 372 : 687 - 693
  • [22] Production of functionally active Penicillium chrysogenum isopenicillin N synthase in the yeast Hansenula polymorpha
    Loknath Gidijala
    Roel AL Bovenberg
    Paul Klaassen
    Ida J van der Klei
    Marten Veenhuis
    Jan AKW Kiel
    BMC Biotechnology, 8
  • [23] Spectroscopic studies reveal details of substrate-induced conformational changes distant from the active site in isopenicillin N synthase
    Rabe, Patrick
    Walla, Carla C.
    Goodyear, Noelle K.
    Welsh, Jordan
    Southwart, Rebecca
    Clifton, Ian
    Linyard, James D. S.
    Tumber, Anthony
    Claridge, Tim D. W.
    Myers, William K.
    Schofield, Christopher J.
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2022, 298 (09)
  • [24] X-ray free-electron laser studies reveal correlated motion during isopenicillin N synthase catalysis
    Rabe, Patrick
    Kamps, Jos J. A. G.
    Sutherlin, Kyle D.
    Linyard, James D. S.
    Aller, Pierre
    Pham, Cindy C.
    Makita, Hiroki
    Clifton, Ian
    McDonough, Michael A.
    Leissing, Thomas M.
    Shutin, Denis
    Lang, Pauline A.
    Butryn, Agata
    Brem, Jurgen
    Gul, Sheraz
    Fuller, Franklin D.
    Kim, In-Sik
    Cheah, Mun Hon
    Fransson, Thomas
    Bhowmick, Asmit
    Young, Iris D.
    O'Riordan, Lee
    Brewster, Aaron S.
    Pettinati, Ilaria
    Doyle, Margaret
    Joti, Yasumasa
    Owada, Shigeki
    Tono, Kensuke
    Batyuk, Alexander
    Hunter, Mark S.
    Alonso-Mori, Roberto
    Bergmann, Uwe
    Owen, Robin L.
    Sauter, Nicholas K.
    Claridge, Timothy D. W.
    Robinson, Carol V.
    Yachandra, Vittal K.
    Yano, Junko
    Kern, Jan F.
    Orville, Allen M.
    Schofield, Christopher J.
    SCIENCE ADVANCES, 2021, 7 (34):
  • [25] MOLECULAR-WEIGHT ANALYSIS OF ISOPENICILLIN-N SYNTHASE BY ELECTROSPRAY MASS-SPECTROMETRY
    APLIN, RT
    BALDWIN, JE
    FUJISHIMA, Y
    SCHOFIELD, CJ
    GREEN, BN
    JARVIS, SA
    FEBS LETTERS, 1990, 264 (02) : 215 - 217
  • [26] The crystal structure of an LLL-configured depsipeptide substrate analogue bound to isopenicillin N synthase
    Ge, Wei
    Clifton, Ian J.
    Stok, Jeanette E.
    Adlington, Robert M.
    Baldwin, Jack E.
    Rutledge, Peter J.
    ORGANIC & BIOMOLECULAR CHEMISTRY, 2010, 8 (01) : 122 - 127
  • [27] Anaerobic crystallisation of an isopenicillin N synthase center dot Fe(II)center dot substrate complex demonstrated by X-ray studies
    Roach, PL
    Clifton, IJ
    Hensgens, CMH
    Shibata, N
    Long, AJ
    Strange, RW
    Hasnain, SS
    Schofield, CJ
    Baldwin, JE
    Hajdu, J
    EUROPEAN JOURNAL OF BIOCHEMISTRY, 1996, 242 (03): : 736 - 740
  • [28] Crystallographic snapshots of sulfur insertion by lipoyl synthase
    McLaughlin, Martin I.
    Lanz, Nicholas D.
    Goldman, Peter J.
    Lee, Kyung-Hoon
    Booker, Squire J.
    Drennan, Catherine L.
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2016, 113 (34) : 9446 - 9450
  • [29] Active-site-mediated elimination of hydrogen fluoride from a fluorinated substrate analogue by isopenicillin N synthase
    Grummitt, AR
    Rutledge, PJ
    Clifton, IJ
    Baldwin, JE
    BIOCHEMICAL JOURNAL, 2004, 382 (02) : 659 - 666
  • [30] CLONING AND CHARACTERIZATION OF THE ISOPENICILLIN-N SYNTHASE GENE OF STREPTOMYCES-GRISEUS NRRL-3851 AND STUDIES OF EXPRESSION AND COMPLEMENTATION OF THE CEPHAMYCIN PATHWAY IN STREPTOMYCES-CLAVULIGERUS
    GARCIADOMINGUEZ, M
    LIRAS, P
    MARTIN, JF
    ANTIMICROBIAL AGENTS AND CHEMOTHERAPY, 1991, 35 (01) : 44 - 52