DNA topoisomerases in apicomplexan parasites: promising targets for drug discovery

被引:44
作者
Garcia-Estrada, Carlos [1 ]
Fernandez Prada, Christopher [1 ]
Fernandez-Rubio, Celia [1 ]
Rojo-Vazquez, Francisco [2 ]
Balana-Fouce, Rafael [1 ]
机构
[1] Univ Leon, Dept Ciencias Biomed INTOXCAL, E-24071 Leon, Spain
[2] Univ Leon, Dept Sanidad Anim, E-24071 Leon, Spain
关键词
DNA topoisomerases; chemotherapy; apicomplexan protozoa; tropical diseases; PLASMODIUM-FALCIPARUM INVITRO; TOXOPLASMA-GONDII; CRYPTOSPORIDIUM-PARVUM; LEISHMANIA-DONOVANI; II TOPOISOMERASES; IB TOPOISOMERASE; GENE; MALARIA; MECHANISM; DOMAIN;
D O I
10.1098/rspb.2009.2176
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
The phylum Apicomplexa includes a large group of protozoan parasites responsible for a wide range of animal and human diseases. Destructive pathogens, such as Plasmodium falciparum and Plasmodium vivax, causative agents of human malaria, Cryptosporidium parvum, responsible of childhood diarrhoea, and Toxoplasma gondii, responsible for miscarriages and abortions in humans, are frequently associated with HIV immunosuppression in AIDS patients. The lack of effective vaccines, along with years of increasing pressure to eradicate outbreaks with the use of drugs, has favoured the formation of multidrug resistant strains in endemic areas. Almost all apicomplexan of medical interest contain two endosymbiotic organelles that contain their own mitochondrial and apicoplast DNA. Apicoplast is an attractive target for drug testing because in addition to harbouring singular metabolic pathways absent in the host, it also has its own transcription and translation machinery of bacterial origin. Accordingly, apicomplexan protozoa contain an interesting mixture of enzymes to unwind DNA from eukaryotic and prokaryotic origins. On the one hand, the main mechanism of DNA unwinding includes the scission of one-type I-or both DNA strands-type II eukaryotic topoisomerases, establishing transient covalent bonds with the scissile end. These enzymes are targeted by camptothecin and etoposide, respectively, two natural drugs whose semisynthetic derivatives are currently used in cancer chemotherapy. On the other hand, DNA gyrase is a bacterial-borne type II DNA topoisomerase that operates within the apicoplast and is effectively targeted by bacterial antibiotics like fluoroquinolones and aminocoumarins. The present review is an update on the new findings concerning topoisomerases in apicomplexan parasites and the role of these enzymes as targets for therapeutic agents.
引用
收藏
页码:1777 / 1787
页数:11
相关论文
共 50 条
  • [41] Mycobacterial Targets for Thiourea Derivatives: Opportunities for Virtual Screening in Tuberculosis Drug Discovery
    Milani, Vinicius de Melo
    Silva, Mariana Luiza
    Camargo, Priscila Goes
    Bispo, Marcelle de Lima Ferreira
    CURRENT MEDICINAL CHEMISTRY, 2024, 31 (29) : 4703 - 4724
  • [42] Antimalarial drug discovery against malaria parasites through haplopine modification: An advanced computational approach
    Akash, Shopnil
    Abdelkrim, Guendouzi
    Bayil, Imren
    Hosen, Md. Eram
    Mukerjee, Nobendu
    Shater, Abdullah F.
    Saleh, Fayez M.
    Albadrani, Ghadeer M.
    Al-Ghadi, Muath Q.
    Abdel-Daim, Mohamed M.
    Tok, Tugba Taskin
    JOURNAL OF CELLULAR AND MOLECULAR MEDICINE, 2023, 27 (20) : 3168 - 3188
  • [43] Genomic scale analysis of lateral gene transfer in Apicomplexan parasites: insights into early eukaryotic evolution, host-pathogen interaction and drug target development
    Peixoto, Lucia
    Roos, David S.
    BMC BIOINFORMATICS, 2007, 8 (Suppl 8)
  • [44] Genomic scale analysis of lateral gene transfer in Apicomplexan parasites: insights into early eukaryotic evolution, host-pathogen interaction and drug target development
    Lucia Peixoto
    David S Roos
    BMC Bioinformatics, 8
  • [45] Molecular Mechanisms of Cancer Drug Resistance: Emerging Biomarkers and Promising Targets to Overcome Tumor Progression
    Fontana, Fabrizio
    Anselmi, Martina
    Limonta, Patrizia
    CANCERS, 2022, 14 (07)
  • [46] Assessment of Dengue virus helicase and methyltransferase as targets for fragment-based drug discovery
    Coutard, Bruno
    Decroly, Etienne
    Li, Changqing
    Sharff, Andrew
    Lescar, Julien
    Bricogne, Gerard
    Barral, Karine
    ANTIVIRAL RESEARCH, 2014, 106 : 61 - 70
  • [47] Discovery of cancer drug targets by CRISPR-Cas9 screening of protein domains
    Shi, Junwei
    Wang, Eric
    Milazzo, Joseph P.
    Wang, Zihua
    Kinney, Justin B.
    Vakoc, Christopher R.
    NATURE BIOTECHNOLOGY, 2015, 33 (06) : 661 - +
  • [48] The role of DNA mismatch repair in generating genetic diversity and drug resistance in malaria parasites
    Bethke, Lara
    Thomas, Susan
    Walker, Kerone
    Lakhia, Ronak
    Rangarajan, Radha
    Wirth, Dyann
    MOLECULAR AND BIOCHEMICAL PARASITOLOGY, 2007, 155 (01) : 18 - 25
  • [49] Noncanonical DNA Secondary Structures as Drug Targets: the Prospect of the i-Motif
    Amato, Jussara
    Iaccarino, Nunzia
    Randazzo, Antonio
    Novellino, Ettore
    Pagano, Bruno
    CHEMMEDCHEM, 2014, 9 (09) : 2026 - 2030
  • [50] Natural products against key Mycobacterium tuberculosis enzymatic targets: Emerging opportunities for drug discovery
    Cazzaniga, Giulia
    Mori, Matteo
    Chiarelli, Laurent Roberto
    Gelain, Arianna
    Meneghetti, Fiorella
    Villa, Stefania
    EUROPEAN JOURNAL OF MEDICINAL CHEMISTRY, 2021, 224