3.9 Article

Molecular docking-based computational platform for high-throughput virtual screening

Journal

Publisher

SPRINGERNATURE
DOI: 10.1007/s42514-021-00086-5

Keywords

Molecular docking; Virtual screening; Supercomputing; Ultra-large-scale computing

Funding

  1. Guangdong Provincial Key Laboratory of Prevention and Control for Severe Clinical Animal Diseases [2016B030301007]
  2. Ministry of Science and Technology of China [2016YFB0201700]

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Structure-based virtual screening is a key method in computer-aided drug design, which can accelerate the identification of highly active compounds. By analyzing the challenges and proposing solutions, it is possible to achieve large-scale virtual screening faster and easier. The development of web services lowers the barrier to virtual screening.
Structure-based virtual screening is a key, routine computational method in computer-aided drug design. Such screening can be used to identify potentially highly active compounds, to speed up the progress of novel drug design. Molecular docking-based virtual screening can help find active compounds from large ligand databases by identifying the binding affinities between receptors and ligands. In this study, we analyzed the challenges of virtual screening, with the aim of identifying highly active compounds faster and more easily than is generally possible. We discuss the accuracy and speed of molecular docking software and the strategy of high-throughput molecular docking calculation, and we focus on current challenges and our solutions to these challenges of ultra-large-scale virtual screening. The development of Web services helps lower the barrier to drug virtual screening. We introduced some related web sites for docking and virtual screening, focusing on the development of pre- and post-processing interactive visualization and large-scale computing.

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