Rational Optimization of Drug-Target Residence Time: Insights from Inhibitor Binding to the Staphylococcus aureus Fabl Enzyme-Product Complex

被引:48
作者
Chang, Andrew [1 ]
Schiebel, Johannes [2 ]
Yu, Weixuan [1 ]
Bommineni, Gopal R. [1 ]
Pan, Pan [1 ]
Baxter, Michael V. [1 ]
Khanna, Avinash [1 ]
Sotriffer, Christoph A. [3 ]
Kisker, Caroline [2 ]
Tonge, Peter J. [1 ]
机构
[1] SUNY Stony Brook, Dept Chem, Inst Chem Biol & Drug Discovery, Stony Brook, NY 11794 USA
[2] Univ Wurzburg, Inst Biol Struct, Rudolf Virchow Ctr Expt Biomed, D-97080 Wurzburg, Germany
[3] Univ Wurzburg, Inst Pharm & Food Chem, D-97074 Wurzburg, Germany
基金
美国国家卫生研究院;
关键词
CARRIER PROTEIN REDUCTASE; FATTY-ACID SYNTHESIS; ENOYL REDUCTASE; CONFORMATIONAL ADAPTATION; TRICLOSAN; MECHANISM; SLOW; INHA; RESISTANCE; SUBSTRATE;
D O I
10.1021/bi400413c
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
Drug-target kinetics has recently emerged as an especially important facet of the drug discovery process. In particular, prolonged drug-target residence times may confer enhanced efficacy and selectivity in the open in vivo system. However, the lack of accurate kinetic and structural data for a series of congeneric compounds hinders the rational design of inhibitors with decreased off-rates. Therefore, we chose the Staphylococcus aureus enoyl-ACP reductase (saFabI) - an important target for the development of new anti-staphylococcal drugs - as a model system to rationalize and optimize the drug-target residence time on a structural basis. Using our new, efficient, and widely applicable mechanistically informed kinetic approach, we obtained a full characterization of saFabI inhibition by a series of 20 diphenyl ethers complemented by a collection of 9 saFabI-inhibitor crystal structures. We identified a strong correlation between the affinities of the investigated saFabI diphenyl ether inhibitors and their corresponding residence times, which can be rationalized on a structural basis. Because of its favorable interactions with the enzyme, the residence time of our most potent compound exceeds 10 h. In addition, we found that affinity and residence time in this system can be significantly enhanced by modifications predictable by a careful consideration of catalysis. Our study provides a blueprint for investigating and prolonging drug-target kinetics and may aid in the rational design of long-residence-time inhibitors targeting the essential saFabI enzyme.
引用
收藏
页码:4217 / 4228
页数:12
相关论文
共 51 条
  • [1] [Anonymous], 2010, The PyMOL Molecular Graphics System (2.5.4)
  • [2] [Anonymous], 1992, JOINT CCP4 ESF EAMCB
  • [3] [Anonymous], 2010, MATH VERS 8 0
  • [4] Staphylococcus aureus:: A well-armed pathogen
    Archer, GL
    [J]. CLINICAL INFECTIOUS DISEASES, 1998, 26 (05) : 1179 - 1181
  • [5] A mechanism of drug action revealed by structural studies of enoyl reductase
    Baldock, C
    Rafferty, JB
    Sedelnikova, SE
    Baker, PJ
    Stuitje, AR
    Slabas, AR
    Hawkes, TR
    Rice, DW
    [J]. SCIENCE, 1996, 274 (5295) : 2107 - 2110
  • [6] Essentiality of FASII pathway for Staphylococcus aureus
    Balemans, Wendy
    Lounis, Nacer
    Gilissen, Ron
    Guillemont, Jerome
    Simmen, Kenny
    Andries, Koen
    Koul, Anil
    [J]. NATURE, 2010, 463 (7279) : E3 - E4
  • [7] INHA, A GENE ENCODING A TARGET FOR ISONIAZID AND ETHIONAMIDE IN MYCOBACTERIUM-TUBERCULOSIS
    BANERJEE, A
    DUBNAU, E
    QUEMARD, A
    BALASUBRAMANIAN, V
    UM, KS
    WILSON, T
    COLLINS, D
    DELISLE, G
    JACOBS, WR
    [J]. SCIENCE, 1994, 263 (5144) : 227 - 230
  • [8] Conformational Adaptation Drives Potent, Selective and Durable Inhibition of the Human Protein Methyltransferase DOT1L
    Basavapathruni, Aravind
    Jin, Lei
    Daigle, Scott R.
    Majer, Christina R. A.
    Therkelsen, Carly A.
    Wigle, Tim J.
    Kuntz, Kevin W.
    Chesworth, Richard
    Pollock, Roy M.
    Scott, Margaret P.
    Moyer, Mikel P.
    Richon, Victoria M.
    Copeland, Robert A.
    Olhava, Edward J.
    [J]. CHEMICAL BIOLOGY & DRUG DESIGN, 2012, 80 (06) : 971 - 980
  • [9] Type II fatty acid synthesis is not a suitable antibiotic target for Gram-positive pathogens
    Brinster, Sophie
    Lamberet, Gilles
    Staels, Bart
    Trieu-Cuot, Patrick
    Gruss, Alexandra
    Poyart, Claire
    [J]. NATURE, 2009, 458 (7234) : 83 - U5
  • [10] Waves of resistance: Staphylococcus aureus in the antibiotic era
    Chambers, Henry F.
    DeLeo, Frank R.
    [J]. NATURE REVIEWS MICROBIOLOGY, 2009, 7 (09) : 629 - 641