SARS-CoV2 billion-compound docking

被引:0
|
作者
David M. Rogers
Rupesh Agarwal
Josh V. Vermaas
Micholas Dean Smith
Rajitha T. Rajeshwar
Connor Cooper
Ada Sedova
Swen Boehm
Matthew Baker
Jens Glaser
Jeremy C. Smith
机构
[1] Oak Ridge National Laboratory,Computing and Computational Sciences Directorate
[2] Oak Ridge National Laboratory,UT/ORNL Center for Molecular Biophysics
[3] The University of Tennessee,Department of Biochemistry and Cellular and Molecular Biology
[4] Knoxville,MSU
[5] Michigan State University,DOE Plant Research Laboratory
[6] Oak Ridge National Laboratory,Biological Sciences Division
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
This dataset contains ligand conformations and docking scores for 1.4 billion molecules docked against 6 structural targets from SARS-CoV2, representing 5 unique proteins: MPro, NSP15, PLPro, RDRP, and the Spike protein. Docking was carried out using the AutoDock-GPU platform on the Summit supercomputer and Google Cloud. The docking procedure employed the Solis Wets search method to generate 20 independent ligand binding poses per compound. Each compound geometry was scored using the AutoDock free energy estimate, and rescored using RFScore v3 and DUD-E machine-learned rescoring models. Input protein structures are included, suitable for use by AutoDock-GPU and other docking programs. As the result of an exceptionally large docking campaign, this dataset represents a valuable resource for discovering trends across small molecule and protein binding sites, training AI models, and comparing to inhibitor compounds targeting SARS-CoV-2. The work also gives an example of how to organize and process data from ultra-large docking screens.
引用
收藏
相关论文
共 50 条
  • [41] Neuroimmune disorders after SARS-CoV2 vaccination
    Granja Lopez, J.
    Estebas Armas, C.
    Lorenzo Dieguez, M.
    De Celis Ruiz, E.
    Rigual Bobillo, R.
    Puertas Munoz, I.
    Fernandez-Fournier Fernandez, M.
    Torres Iglesias, G.
    Tallon Barranco, A.
    Ramirez Garcia, E.
    Lacruz Ballester, L.
    EUROPEAN JOURNAL OF NEUROLOGY, 2023, 30 : 393 - 393
  • [42] SARS-CoV2 Infection and the Importance of Potassium Balance
    Causton, Helen C.
    FRONTIERS IN MEDICINE, 2021, 8
  • [43] Sonographic Evolution and Resolution of SARS-CoV2 Pneumonia
    Jalil, Bilal A.
    Kugasia, Irfanali R.
    Ijaz, Mohsin
    AMERICAN JOURNAL OF THE MEDICAL SCIENCES, 2021, 361 (03): : E21 - E22
  • [44] Acquired Haemophilia associated with SARS-CoV2 infection
    Medeiros, Catarina
    Brito, Daniela
    Jorge, Rita Serras
    GALICIA CLINICA, 2022, 83 (03): : 40 - 41
  • [45] Association of anticoagulation use with SARS-CoV2 detection
    Kavecansky, Juraj
    Dusendang, Jennifer R.
    Tavakoli, Jahan
    Schmittdiel, Julie
    Ho, Gwendolyn
    Loyles, Jodi
    Pai, Ashok
    THROMBOSIS RESEARCH, 2021, 198 : 99 - 102
  • [46] Potential therapeutic and pharmacological strategies for SARS-CoV2
    Doaa A. Ghareeb
    Samar R. Saleh
    Mohammed S. Nofal
    Mohamed M. Y. Kaddah
    Salma. F. Hassan
    Inas K. Seif
    Sally A. El-Zahaby
    Shaimaa M. Khedr
    Marwa Y. Kenawy
    Aliaa A. Masoud
    Salma A. Soudi
    Ahmed A. Sobhy
    Jaillan G. Sery
    Miral G. Abd El-Wahab
    Alshimaa A. Abd Elmoneam
    Abdulaziz Mohsen Al-mahallawi
    Maha A. El-Demellawy
    Journal of Pharmaceutical Investigation, 2021, 51 : 281 - 296
  • [47] Kidney implications of SARS-CoV2 infection in children
    Bjornstad, Erica C.
    Seifert, Michael E.
    Sanderson, Keia
    Feig, Daniel, I
    PEDIATRIC NEPHROLOGY, 2022, 37 (07) : 1453 - 1467
  • [48] TOCILIZUMAB IS PROTECTIVE AGAINST SARS-COV2 INFECTION OR NOT?
    Fayed, F.
    Abdelkarim, E.
    ANNALS OF THE RHEUMATIC DISEASES, 2021, 80 : 1359 - 1360
  • [49] Famotidine Against SARS-CoV2: A Hope or Hype?
    Ghosh, Ritwik
    Chatterjee, Subhankar
    Dubey, Souvik
    Lavie, Carl J.
    MAYO CLINIC PROCEEDINGS, 2020, 95 (08) : 1797 - 1799
  • [50] Kidney implications of SARS-CoV2 infection in children
    Erica C. Bjornstad
    Michael E. Seifert
    Keia Sanderson
    Daniel I. Feig
    Pediatric Nephrology, 2022, 37 : 1453 - 1467