Novel bacterial topoisomerase inhibitors: unique targeting activities of amide enzyme-binding motifs for tricyclic analogs

被引:5
作者
Mann, Chelsea A. [1 ]
Moreno, Jessika J. Carvajal [2 ]
Lu, Yanran [1 ]
Dellos-Nolan, Sheri [3 ]
Wozniak, Daniel J. [3 ]
Yalowich, Jack C. [2 ]
Mitton-Fry, Mark J. [1 ]
机构
[1] Ohio State Univ, Coll Pharm, Div Med Chem & Pharmacognosy, Columbus, OH 43210 USA
[2] Ohio State Univ, Coll Pharm, Div Pharmaceut & Pharmacol, Columbus, OH 43210 USA
[3] Ohio State Univ, Coll Med, Dept Microbial Infect & Immun, Columbus, OH USA
基金
美国国家卫生研究院;
关键词
multidrug resistance; novel bacterial topoisomerase inhibitors; anticancer drugs; DNA; MECHANISM; RULES; BROAD; SAR;
D O I
10.1128/aac.00482-23
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Antimicrobial resistance has made a sizeable impact on public health and continues to threaten the effectiveness of antibacterial therapies. Novel bacterial topoisomerase inhibitors (NBTIs) are a promising class of antibacterial agents with a unique binding mode and distinct pharmacology that enables them to evade existing resistance mechanisms. The clinical development of NBTIs has been plagued by several issues, including cardiovascular safety. Herein, we report a sub-series of tricyclic NBTIs bearing an amide linkage that displays promising antibacterial activity, potent dual-target inhibition of DNA gyrase and topoisomerase IV (TopoIV), as well as improved cardiovascular safety and metabolic profiles. These amide NBTIs induced both single- and double-strand breaks in pBR322 DNA mediated by Staphylococcus aureus DNA gyrase, in contrast to prototypical NBTIs that cause only single-strand breaks. Unexpectedly, amides 1a and 1b targeted human topoisomerase IIa (TOP2a) causing both single- and double-strand breaks in pBR322 DNA, and induced DNA strand breaks in intact human leukemia K562 cells. In addition, anticancer drug-resistant K/VP.5 cells containing decreased levels of TOP2a were cross-resistant to amides 1a and 1b. Together, these results demonstrate broad spectrum antibacterial properties of selected tricyclic NBTIs, desirable safety profiles, an unusual ability to induce DNA double-stranded breaks, and activity against human TOP2a. Future work will be directed toward optimization and development of tricyclic NBTIs with potent and selective activity against bacteria. Finally, the current results may provide an additional avenue for development of selective anticancer agents.
引用
收藏
页数:17
相关论文
共 38 条
  • [1] Mechanism of Quinolone Action and Resistance
    Aldred, Katie J.
    Kerns, Robert J.
    Osheroff, Neil
    [J]. BIOCHEMISTRY, 2014, 53 (10) : 1565 - 1574
  • [2] [Anonymous], 2018, M07 Methods for Dilution Antimicrobial Susceptibility Tests for Bacteria That Grow Aerobically
  • [3] Bates A. D., 2005, DNA TOPOLOGY
  • [4] Type IIA topoisomerase inhibition by a new class of antibacterial agents
    Bax, Benjamin D.
    Chan, Pan F.
    Eggleston, Drake S.
    Fosberry, Andrew
    Gentry, Daniel R.
    Gorrec, Fabrice
    Giordano, Ilaria
    Hann, Michael M.
    Hennessy, Alan
    Hibbs, Martin
    Huang, Jianzhong
    Jones, Emma
    Jones, Jo
    Brown, Kristin Koretke
    Lewis, Ceri J.
    May, Earl W.
    Saunders, Martin R.
    Singh, Onkar
    Spitzfaden, Claus E.
    Shen, Carol
    Shillings, Anthony
    Theobald, Andrew J.
    Wohlkonig, Alexandre
    Pearson, Neil D.
    Gwynn, Michael N.
    [J]. NATURE, 2010, 466 (7309) : 935 - U51
  • [5] Quinolones: Mechanism, Lethality and Their Contributions to Antibiotic Resistance
    Bush, Natassja G.
    Diez-Santos, Isabel
    Abbott, Lauren R.
    Maxwell, Anthony
    [J]. MOLECULES, 2020, 25 (23):
  • [6] Centers for Disease Control and Prevention, 2019, ANTIBIOTIC RESISTANC
  • [7] DNA topoisomerases: Structure, function, and mechanism
    Champoux, JJ
    [J]. ANNUAL REVIEW OF BIOCHEMISTRY, 2001, 70 : 369 - 413
  • [8] Gibson EG., 2018, Antimicrobial Resistance in the 21st Century, P507, DOI DOI 10.1007/978-3-319-78538-7
  • [9] Bimodal Actions of a Naphthyridone/Aminopiperidine-Based Antibacterial That Targets Gyrase and Topoisomerase IV
    Gibson, Elizabeth G.
    Oviatt, Alexandria A.
    Cacho, Monica
    Neuman, Keir C.
    Chan, Pan F.
    Osheroff, Neil
    [J]. BIOCHEMISTRY, 2019, 58 (44) : 4447 - 4455
  • [10] Mechanistic and Structural Basis for the Actions of the Antibacterial Gepotidacin against Staphylococcus aureus Gyrase
    Gibson, Elizabeth G.
    Bax, Ben
    Chan, Pan F.
    Osheroff, Neil
    [J]. ACS INFECTIOUS DISEASES, 2019, 5 (04): : 570 - 581