| Literature DB >> 26949519 |
Abstract
Computational approaches are an integral part of interdisciplinary drug discovery research. Understanding the science behind computational tools, their opportunities, and limitations is essential to make a true impact on drug discovery at different levels. If applied in a scientifically meaningful way, computational methods improve the ability to identify and evaluate potential drug molecules, but there remain weaknesses in the methods that preclude naïve applications. Herein, current trends in computer-aided drug discovery are reviewed, and selected computational areas are discussed. Approaches are highlighted that aid in the identification and optimization of new drug candidates. Emphasis is put on the presentation and discussion of computational concepts and methods, rather than case studies or application examples. As such, this contribution aims to provide an overview of the current methodological spectrum of computational drug discovery for a broad audience.Entities:
Keywords: computational; drug discovery; in silico
Year: 2015 PMID: 26949519 PMCID: PMC4756805 DOI: 10.12688/f1000research.6653.1
Source DB: PubMed Journal: F1000Res ISSN: 2046-1402
Figure 1. Areas of computer-aided drug discovery.
Selected computational areas are shown providing focal points of the discussion. Each subject area covers a variety of computational approaches, as discussed in the text.
Figure 2. Binding mode prediction.
In many instances, computer algorithms can predict correct or nearly correct interactions of small molecules and their target proteins. Shown are the X-ray structure of factor Xa (a serine protease) in complex with an inhibitor (cyan) and the putative binding mode of another inhibitor (magenta) generated by flexible ligand docking. The protein surface is rendered transparent (gray) and selected active site residues are depicted. The factor Xa inhibitors and X-ray structure were reported in 53.