Top Leads for Swine Influenza A/H1N1 Virus Revealed by Steered Molecular Dynamics Approach

被引:73
|
作者
Binh Khanh Mai [2 ]
Viet, Man Hoang [1 ]
Li, Mai Suan [1 ]
机构
[1] Polish Acad Sci, Inst Phys, PL-02668 Warsaw, Poland
[2] Inst Computat Sci & Technol, Minh City, Vietnam
关键词
STRUCTURE-BASED DESIGN; FREE-ENERGY ANALYSIS; H5N1; INFLUENZA; BINDING; NEURAMINIDASE; OSELTAMIVIR; RESISTANCE; INHIBITORS; PROTEIN; STABILITY;
D O I
10.1021/ci100346s
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
Since March 2009, the rapid spread of infection during the recent A/H1N1 swine flu pandemic has raised concerns of a far more dangerous outcome should this virus become resistant to current drug therapies. Currently oseltamivir (tamiflu) is intensively used for the treatment of influenza and is reported effective for 2009 A/H1N1 virus. However, as this virus is evolving fast, some drug-resistant strains are emerging. Therefore, it is critical to seek alternative treatments and identify roots of the drug resistance. In this paper, we use the steered molecular dynamics (SMD) approach to estimate the binding affinity of ligands to the glycoprotein neuraminidase. Our idea is based on the hypothesis that the larger is the force needed to unbind a ligand from a receptor the higher its binding affinity. Using all-atom models with Gromos force field 43a1 and explicit water, we have studied the binding ability of 32 ligands to glycoprotein neuraminidase from swine flu virus A/H1N1. The electrostatic interaction is shown to play a more important role in binding affinity than the van der Waals one. We have found that four ligands 141562, 5069, 46080, and 117079 from the NSC set are the most promising candidates to cope with this virus, while peramivir, oseltamivir, and zanamivir are ranked 8, 11, and 20. The observation that these four ligands are better than existing commercial drugs has been also confirmed by our results on the binding free energies obtained by the molecular mechanics-Poisson-Boltzmann surface area (MM-PBSA) method. Our prediction may be useful for the therapeutic application.
引用
收藏
页码:2236 / 2247
页数:12
相关论文
共 50 条
  • [1] Influenza A (H1N1) Virus (Swine Influenza): A Webliography
    Taylor, Mary Virginia
    Stephenson, Priscilla L.
    JOURNAL OF CONSUMER HEALTH ON THE INTERNET, 2009, 13 (04) : 374 - 385
  • [2] Swine influenza A (H1N1) virus infection in infants
    Zenciroglu, Aysegul
    Kundak, Ahmet Afsin
    Aydin, Mustafa
    Okumus, Nurullah
    Dursun, Arzu
    Ipek, Mehmet Sah
    Karagol, Belma Saygili
    Hakan, Nilay
    Karadag, Nazmiye Nilgun
    Altas, Ayse Basak
    Korukluoglu, Gulay
    EUROPEAN JOURNAL OF PEDIATRICS, 2011, 170 (03) : 333 - 338
  • [3] Swine influenza A (H1N1) virus infection in infants
    Aysegul Zenciroglu
    Ahmet Afsin Kundak
    Mustafa Aydin
    Nurullah Okumus
    Arzu Dursun
    Mehmet Sah Ipek
    Belma Saygılı Karagol
    Nilay Hakan
    Nazmiye Nilgun Karadag
    Ayse Basak Altas
    Gulay Korukluoglu
    European Journal of Pediatrics, 2011, 170 : 333 - 338
  • [4] Molecular Characterization and Pathogenicity Evaluation of a H1N1 Subtype Swine Influenza Virus
    Chen, Chaoyang
    Tian, Changxiao
    Xu, Suhang
    Zhang, Yingxue
    Tang, Lijie
    PAKISTAN VETERINARY JOURNAL, 2024, 44 (03) : 868 - 874
  • [5] Swine Influenza A (H1N1)
    AlKhawaja, Safaa
    BAHRAIN MEDICAL BULLETIN, 2009, 31 (02)
  • [6] Novel Swine—Origin Influenza A: The 2009 H1N1 Influenza Virus
    Nahed M. Abdel-Haq
    Basim I. Asmar
    The Indian Journal of Pediatrics, 2011, 78 : 74 - 80
  • [7] The novel influenza A/H1N1 or (2009) Influenza A/H1N1 or "Swine-origin influenza A (H1N1)"
    Cabezas Fernandez del Campo, Jose Antonio
    ANALES DE LA REAL ACADEMIA NACIONAL DE FARMACIA, 2009, 75 (04): : 947 - 963
  • [8] Molecular epidemiology study of swine influenza virus revealing a reassorted virus H1N1 in swine farms in Cuba
    Perez, Lester J.
    Laura Perera, Carmen
    Coronado, Liani
    Rios, Liliam
    Vega, Armando
    Frias, Maria T.
    Ganges, Llilianne
    Ignacio Nunez, Jose
    Diaz de Arce, Heidy
    PREVENTIVE VETERINARY MEDICINE, 2015, 119 (3-4) : 172 - 178
  • [9] Reassortant H1N1 influenza virus vaccines protect pigs against pandemic H1N1 influenza virus and H1N2 swine influenza virus challenge
    Yang, Huanliang
    Chen, Yan
    Shi, Jianzhong
    Guo, Jing
    Xin, Xiaoguang
    Zhang, Jian
    Wang, Dayan
    Shu, Yuelong
    Qiao, Chuanling
    Chen, Hualan
    VETERINARY MICROBIOLOGY, 2011, 152 (3-4) : 229 - 234
  • [10] Antibodies against swine influenza virus neutralize the pandemic influenza virus A/H1N1
    Tsukamoto, Masaya
    Hiroi, Satoshi
    Adachi, Kazuhide
    Kato, Hidenori
    Inai, Marie
    Konishi, Itsuro
    Tanaka, Masaru
    Yamamoto, Ryouhei
    Sawa, Masaki
    Handharyani, Ekowati
    Tsukamoto, Yasuhiro
    MOLECULAR MEDICINE REPORTS, 2011, 4 (02) : 209 - 214