Identification of a minimal subset of receptor conformations for improved multiple conformation docking and two-step scoring

Citations

WEB OF SCIENCE

45
Citations

SCOPUS

47

초록

Docking and scoring are critical issues in virtual drug screening methods. Fast and reliable methods are required for the prediction of binding affinity especially when applied to a large library of compounds. The implementation of receptor flexibility and refinement of scoring functions for this purpose are extremely challenging in terms of computational speed. Here we propose a knowledge-based multiple-conformation docking method that efficiently accommodates receptor flexibility thus permitting reliable virtual screening of large compound libraries. Starting with a small number of active compounds, a preliminary docking operation is conducted on a large ensemble of receptor conformations to select the minimal subset of receptor conformations that provides a strong correlation between the experimental binding affinity (e.g., K-i, IC50) and the docking score. Only this subset is used for subsequent multiple-conformation docking of the entire data set of library (test) compounds. In conjunction with the multiple-conformation docking procedure, a two-step scoring scheme is employed by which the optimal scoring geometries obtained from the multiple-conformation docking are re-scored by a molecular mechanics energy function including desolvation terms. To demonstrate the feasibility of this approach, we applied thi

제목
Identification of a minimal subset of receptor conformations for improved multiple conformation docking and two-step scoring
저자
Yoon S; Welsh WJ
DOI
10.1021/ci0341619
발행일
2004-01
저널명
Journal of Chemical Information and Computer Sciences
권
44
호
1
페이지
88 ~ 96