Mycobacterium tuberculosis dihydrofolate reductase is a target for isoniazid

被引:0
|
作者
Argyrides Argyrou
Matthew W Vetting
Bola Aladegbami
John S Blanchard
机构
[1] Albert Einstein College of Medicine,Department of Biochemistry
[2] Brooklyn College of the City University of New York,Department of Chemistry
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Isoniazid is a key drug used in the treatment of tuberculosis. Isoniazid is a pro-drug, which, after activation by the katG-encoded catalase peroxidase, reacts nonenzymatically with NAD+ and NADP+ to generate several isonicotinoyl adducts of these pyridine nucleotides. One of these, the acyclic 4S isomer of isoniazid-NAD, targets the inhA-encoded enoyl-ACP reductase, an enzyme essential for mycolic acid biosynthesis in Mycobacterium tuberculosis. Here we show that the acyclic 4R isomer of isoniazid-NADP inhibits the M. tuberculosis dihydrofolate reductase (DHFR), an enzyme essential for nucleic acid synthesis. This biologically relevant form of the isoniazid adduct is a subnanomolar bisubstrate inhibitor of M. tuberculosis DHFR. Expression of M. tuberculosis DHFR in Mycobacterium smegmatis mc2155 protects cells against growth inhibition by isoniazid by sequestering the drug. Thus, M. tuberculosis DHFR is the first new target for isoniazid identified in the last decade.
引用
收藏
页码:408 / 413
页数:5
相关论文
共 50 条
  • [31] Mechanism of isoniazid uptake in Mycobacterium tuberculosis
    Bardou, F
    Raynaud, C
    Ramos, C
    Lanéelle, MA
    Lanéelle, G
    MICROBIOLOGY-UK, 1998, 144 : 2539 - 2544
  • [32] THE SIGNIFICANCE OF RESISTANCE OF MYCOBACTERIUM TUBERCULOSIS TO ISONIAZID
    JOHNSTON, RN
    RIDDELL, RW
    AMERICAN REVIEW OF TUBERCULOSIS, 1954, 70 (03): : 442 - 452
  • [33] INVITRO ACTION OF ISONIAZID ON MYCOBACTERIUM TUBERCULOSIS
    KNOX, R
    KING, MB
    WOODROFFE, RC
    LANCET, 1952, 263 (NOV1): : 854 - 858
  • [34] ISONIAZID RESISTANCE IN MYCOBACTERIUM-TUBERCULOSIS
    BLANCHARD, JS
    QUEMARD, A
    SACCHETTINI, J
    JACOBS, WR
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 1994, 208 : 13 - BIOL
  • [35] In vitro inhibition of the Mycobacterium tuberculosis β-ketoacyl-acyl carrier protein reductase MabA by isoniazid
    Ducasse-Cabanot, S
    Cohen-Gonsaud, M
    Marrakchi, H
    Nguyen, M
    Zerbib, D
    Bernadou, J
    Daffé, M
    Labesse, G
    Quémard, A
    ANTIMICROBIAL AGENTS AND CHEMOTHERAPY, 2004, 48 (01) : 242 - 249
  • [36] Acetylation of Isoniazid Is a Novel Mechanism of Isoniazid Resistance in Mycobacterium tuberculosis
    Arun, K. B.
    Madhavan, Aravind
    Abraham, Billu
    Balaji, M.
    Sivakumar, K. C.
    Nisha, P.
    Kumar, R. Ajay
    ANTIMICROBIAL AGENTS AND CHEMOTHERAPY, 2021, 65 (01)
  • [37] Mechanisms of isoniazid resistance in Mycobacterium tuberculosis:: Enzymatic characterization of enoyl reductase mutants identified in isoniazid-resistant clinical isolates
    Basso, LA
    Zheng, RJ
    Musser, JM
    Jacobs, WR
    Blanchard, JS
    JOURNAL OF INFECTIOUS DISEASES, 1998, 178 (03): : 769 - 775
  • [38] Biochemical and genetic data suggest that InhA is not the primary target for activated isoniazid in Mycobacterium tuberculosis
    Mdluli, K
    Sherman, DR
    Hickey, MJ
    Kreiswirth, BN
    Morris, S
    Stover, CK
    Barry, CE
    JOURNAL OF INFECTIOUS DISEASES, 1996, 174 (05): : 1085 - 1090
  • [39] Fragment-Merging Strategies with Known Pyrimidine Scaffolds Targeting Dihydrofolate Reductase from Mycobacterium tuberculosis
    Kirkman, Tim
    Fun Tan, Suk
    Chavez-Pacheco, Sair Maximo
    Hammer, Alexander
    Abell, Chris
    Tosin, Manuela
    Coyne, Anthony G.
    Dias, Marcio V. B.
    CHEMMEDCHEM, 2023, 18 (15)
  • [40] Linking High-Throughput Screens to Identify MoAs and Novel Inhibitors of Mycobacterium tuberculosis Dihydrofolate Reductase
    Maria, John P. Santa, Jr.
    Park, Yumi
    Yang, Lihu
    Murgolo, Nicholas
    Altman, Michael D.
    Zuck, Paul
    Adam, Greg
    Chamberlin, Chad
    Saradjian, Peter
    Dandliker, Peter
    Boshoff, Helena I. M.
    Barry, Clifton E., III
    Garlisi, Charles
    Olsen, David B.
    Young, Katherine
    Glick, Meir
    Nickbarg, Elliott
    Kutchukian, Peter S.
    ACS CHEMICAL BIOLOGY, 2017, 12 (09) : 2448 - 2456