Integrated computational biophysics approach for drug discovery against Nipah virus

被引:0
|
作者
Ropon-Palacios, Georcki [1 ]
Silva, Jhon Perez [1 ]
Gervacio-Villarreal, Edinson Alfonzo [1 ]
Galarza, Jean Pierre Ramos [1 ]
Zuta, Manuel Chenet [2 ]
Otazu, Kewin [1 ]
del Aguila, Ivonne Navarro [3 ]
Wong, Henry Delgado [3 ]
Amay, Frida Sosa [3 ]
Camps, Ihosvany [1 ]
机构
[1] Univ Fed Alfenas UNIFAL MG, Lab Modelagem Computac LaModel, Inst Ciencias Exatas ICEx, BR-37133840 Alfenas, MG, Brazil
[2] Univ Nacl Tecnol Lima Sur UNTELS, Villa El Salvador, Peru
[3] Univ Nacl Amazonia Peruana, Iquitos 16001, Peru
关键词
Nipah virus; NiV-G; Drug discovery; Virtual screening; Molecular dynamics; Procyanidin; MOLECULAR-DYNAMICS; ATTACHMENT GLYCOPROTEIN; FORCE; PROCYANIDINS; AUTOMATION; ALGORITHM; DOCKING; VERSION; RATTLE; SHAKE;
D O I
10.1016/j.bbrc.2024.151140
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
The Nipah virus (NiV) poses a pressing global threat to public health due to its high mortality rate, multiple modes of transmission, and lack of effective treatments. NiV glycoprotein G (NiV-G) emerges as a promising target for the discovery of NiV drugs because of its essential role in viral entry and membrane fusion. Therefore, in this study, we applied an integrated computational and biophysics approach to identify potential inhibitors of NiV-G within a curated dataset of Peruvian phytochemicals. The virtual screening results indicated that these compounds could represent a natural source of potential NiV-G inhibitors with Delta G values ranging from -8 to -11 kcal/mol. Among them, procyanidin B2, B3, B7, and C1 exhibited the highest binding affinities and formed the most molecular interactions with NiV-G. Molecular dynamics simulations revealed the induced-fit mechanism of NiV-G pocket interaction with these procyanidins, primarily driven by its hydrophobic nature. Non-equilibrium free energy calculations were used to determine binding affinities, highlighting Procyanidin B3 and B2 as the ligands with the most substantial interactions. In general, this work underscores the potential of Peruvian phytochemicals, particularly procyanidins B2, B3, B7, and C1, as lead compounds for developing anti-NiV drugs through an integrated computational biophysics approach.
引用
收藏
页数:15
相关论文
共 50 条
  • [21] Application of Machine Learning (ML) approach in discovery of novel drug targets against Leishmania: A computational based approach
    Shah, Hayat Ali
    Yasmin, Sabina
    Ansari, Mohammad Yousuf
    COMPUTATIONAL BIOLOGY AND CHEMISTRY, 2025, 117
  • [22] Biophysics in drug discovery: impact, challenges and opportunities
    Jean-Paul Renaud
    Chun-wa Chung
    U. Helena Danielson
    Ursula Egner
    Michael Hennig
    Roderick E. Hubbard
    Herbert Nar
    Nature Reviews Drug Discovery, 2016, 15 : 679 - 698
  • [23] Biophysics in drug discovery: impact, challenges and opportunities
    Renaud, Jean-Paul
    Chung, Chun-wa
    Danielson, U. Helena
    Egner, Ursula
    Hennig, Michael
    Hubbard, Roderick E.
    Nar, Herbert
    NATURE REVIEWS DRUG DISCOVERY, 2016, 15 (10) : 679 - 698
  • [24] Surface proteins, potential drug target for antiviral therapy against Nipah virus and in silico drug design
    Rahman, Rafiqur
    Rashid, S. M. Mahbubbur
    Sayeem, Manzur
    Sharif, Istiaq
    Sharif, Kawsar
    CLINICAL BIOCHEMISTRY, 2011, 44 (13) : S34 - S34
  • [25] A computational pipeline for drug discovery in immunometabolism against autoimmune diseases
    Puniya, Bhanwar Lal
    Bessell, Brandt
    Zhao, Zhongyuan
    Loecker, Josh
    Aghamiri, Sara Sadat
    Mohanty, Sabyasachi
    Amin, Rada
    Helikar, Tomas
    JOURNAL OF IMMUNOLOGY, 2023, 210 (01):
  • [26] Anti-parasitic drug discovery against Babesia microti by natural compounds: an extensive computational drug design approach
    Akash, Shopnil
    Hosen, Md. Eram
    Mahmood, Sajjat
    Supti, Sumaiya Jahan
    Kumer, Ajoy
    Sultana, Shamima
    Jannat, Sultana
    Bayil, Imren
    Nafidi, Hiba-Allah
    Bin Jardan, Yousef A.
    Mekonnen, Amare Bitew
    Bourhia, Mohammed
    FRONTIERS IN CELLULAR AND INFECTION MICROBIOLOGY, 2023, 13
  • [27] Recombinant Measles Virus Vaccine Expressing the Nipah Virus Glycoprotein Protects against Lethal Nipah Virus Challenge
    Yoneda, Misako
    Georges-Courbot, Marie-Claude
    Ikeda, Fusako
    Ishii, Miho
    Nagata, Noriyo
    Jacquot, Frederic
    Raoul, Herve
    Sato, Hiroki
    Kai, Chieko
    PLOS ONE, 2013, 8 (03):
  • [28] Potential therapy against Nipah virus discovered
    不详
    FUTURE VIROLOGY, 2010, 5 (01) : 9 - 9
  • [29] Predicting and designing therapeutics against the Nipah virus
    Sen, Neeladri
    Kanitkar, Tejashree Rajaram
    Roy, Ankit Animesh
    Soni, Neelesh
    Amritkar, Kaustubh
    Supekar, Shreyas
    Nair, Sanjana
    Singh, Gulzar
    Madhusudhan, M. S.
    PLOS NEGLECTED TROPICAL DISEASES, 2019, 13 (12):
  • [30] Integrated Drug Expression Analysis for leukemia: an integrated in silico and in vivo approach to drug discovery
    M H Ung
    C-H Sun
    C-W Weng
    C-C Huang
    C-C Lin
    C-C Liu
    C Cheng
    The Pharmacogenomics Journal, 2017, 17 : 351 - 359