Phytochemicals of Different Medicinal Herbs as Potential Inhibitors Against Dengue Serotype 2 Virus: A Computational Approach

被引:1
|
作者
Roy, Diya [1 ]
Manumol, M. [1 ]
Alagarasu, Kalichamy [2 ]
Parashar, Deepti [2 ]
Cherian, Sarah [1 ]
机构
[1] Natl Inst Virol, Bioinformat Grp, ICMR, 20-A,Dr Ambedkar Rd, Pune 411001, Maharashtra, India
[2] ICMR Natl Inst Virol, Dengue Chikungunya Grp, 20A Dr Ambedkar Rd, Pune 411001, Maharashtra, India
关键词
Dengue virus; Phytochemicals; Antivirals; Molecular docking; MD simulations: molecular dynamics Simulations; DOUBLE-BLIND; CRYSTAL-STRUCTURE; CATALYTIC DOMAIN; PROTEIN; EFFICACY;
D O I
10.1007/s12033-024-01282-8
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
Dengue is one of the major mosquito-borne infectious diseases of the present century, reported to affect about 100-400 million people globally. The lack of effective therapeutic options has inspired several in vitro and in silico studies for the search of antivirals. Our previous study revealed the anti-dengue activity of different plant extracts from Plumeria alba, Bacopa monnieri, Vitex negundo, and Ancistrocladus heyneanus. Therefore, the current in silico study was designed to identify the phytochemicals present in the aforementioned plants, which are possibly responsible for the anti-dengue activity. Different plant databases as well as relevant literature were explored to find out the major compounds present in the above-stated plants followed by screening of the retrieved phytochemicals for the assessment of their binding affinity against different dengue viral proteins via molecular docking. The best poses of protein-ligand complexes obtained after molecular docking were selected for the calculation of binding free energy via MM-GBSA method. Based on the highest docking score and binding energy, six complexes were considered for further analysis. To analyze the stability of the complex, 100 ns molecular dynamics (MD) simulations were carried out using Desmond module in the Schrodinger suite. The MD simulation analysis showed that four compounds viz. liriodendrin, bacopaside VII, isoorientin, and cynaroside exhibited stability with viral targets including the RdRp, NS3 helicase, and E protein indicating their potential as novel anti-dengue antivirals.
引用
收藏
页数:14
相关论文
共 50 条
  • [31] Computational assessment of phytochemicals of medicinal plants from Mexico as potential inhibitors of Salmonella enterica efflux pump AcrB protein
    Oyedara, Omotayo O.
    Fadare, Olatomide A.
    Franco-Frias, Eduardo
    Heredia, Norma
    Garcia, Santos
    JOURNAL OF BIOMOLECULAR STRUCTURE & DYNAMICS, 2023, 41 (05): : 1776 - 1789
  • [32] In Vitro Antiviral Activity of α-Mangostin against Dengue Virus Serotype-2 (DENV-2)
    Panda, Kingshuk
    Alagarasu, Kalichamy
    Patil, Poonam
    Agrawal, Megha
    More, Ashwini
    Kumar, Naveen, V
    Mainkar, Prathama S.
    Parashar, Deepti
    Cherian, Sarah
    MOLECULES, 2021, 26 (10):
  • [33] Antiviral Effect of Microalgae Phaeodactylum tricornutum Protein Hydrolysates against Dengue Virus Serotype 2
    Rivera-Serrano, Bianca Vianey
    Cabanillas-Salcido, Sandy Lucero
    Cordero-Rivera, Carlos Daniel
    Jimenez-Camacho, Ricardo
    Norzagaray-Valenzuela, Claudia Desiree
    Calderon-Zamora, Loranda
    De Jesus-Gonzalez, Luis Adrian
    Reyes-Ruiz, Jose Manuel
    Farfan-Morales, Carlos Noe
    Romero-Utrilla, Alejandra
    Ruiz-Ruelas, Victor Manuel
    Camberos-Barraza, Josue
    Camacho-Zamora, Alejandro
    De la Herran-Arita, Alberto Kousuke
    Angulo-Rojo, Carla
    Guadron-Llanos, Alma Marlene
    Rabago-Monzon, Angel Radames
    Perales-Sanchez, Janitzio Xiomara Korina
    Valdez-Flores, Marco Antonio
    Del Angel, Rosa Maria
    Osuna-Ramos, Juan Fidel
    MARINE DRUGS, 2024, 22 (08)
  • [34] Novel Antiviral Phytochemicals Against Dengue Virus 2 NS2B-NS3 Protease: An In Silico Drug Development Approach
    Bari, Muhammad Abdul
    Ahmed, Sabbir
    Perveen, Faria Farzana
    Akter, Mahfuza
    Ahmed, Nasim
    Hossain, Jakaria
    Nasrulla, Md.
    Akter, Khadiza
    Islam, Md. Nurul
    CHEMISTRYSELECT, 2024, 9 (47):
  • [35] A Computational Approach to Identify Potential Novel Inhibitors against the Coronavirus SARS-CoV-2
    Battisti, Verena
    Wieder, Oliver
    Garon, Arthur
    Seidel, Thomas
    Urban, Ernst
    Langer, Thierry
    MOLECULAR INFORMATICS, 2020, 39 (10)
  • [36] Evaluation of Melongosides as Potential Inhibitors of NS2B-NS3 Activator-Protease of Dengue Virus (Serotype 2) by Using Molecular Docking and Dynamics Simulation Approach
    Biswas, Partha
    Hany Rumi, Ommay
    Ahmed Khan, Dhrubo
    Ahmed, Md Nasir
    Nahar, Nusratun
    Jahan, Rownak
    Zilani, Md Nazmul Hasan
    Paul, Tridib K.
    Hasan, Anamul
    Bondhon, Tohmina Afroze
    Jannat, Khoshnur
    Hasan, Md Nazmul
    Rahmatullah, Mohammed
    JOURNAL OF TROPICAL MEDICINE, 2022, 2022
  • [37] Computer-aided analysis of phytochemicals as potential dengue virus inhibitors based on molecular docking, ADMET and DFT studies
    Qaddir, Iqra
    Rasool, Nouman
    Hussain, Waqar
    Mahmood, Sajid
    JOURNAL OF VECTOR BORNE DISEASES, 2017, 54 (03) : 255 - 262
  • [38] Molecular Docking Studies of Selected Medicinal Drugs as Dengue Virus-2 Protease Inhibitors
    Othman, Rufaidah
    Othman, Rozana
    Baharuddin, Aida
    Ramakrishnan, Nagasundara Ramanan
    Abd Rahman, Noorsaadah
    Yusof, Rohana
    Karsani, Saiful Anuar
    SAINS MALAYSIANA, 2017, 46 (10): : 1865 - 1875
  • [39] Anti-viral activity of culinary and medicinal mushroom extracts against dengue virus serotype 2: an in-vitro study (vol 19, 260, 2019)
    Ellan, Kavithambigai
    Thayan, Ravindran
    Raman, Jegadeesh
    Hidari, Kazuya I. P. J.
    Ismail, Norizah
    Sabaratnam, Vikineswary
    BMC COMPLEMENTARY MEDICINE AND THERAPIES, 2023, 23 (01)
  • [40] Unearthing the inhibitory potential of phytochemicals from Lawsonia inermis L. and some drugs against dengue virus protein NS1: an in silico approach
    Das, Debapriya
    Mallick, Bidisha
    Sinha, Suchita
    Ganguli, Sayak
    Samanta, Dipu
    Banerjee, Rajat
    Roy, Debleena
    JOURNAL OF BIOMOLECULAR STRUCTURE & DYNAMICS, 2025, 43 (07): : 3449 - 3466