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A modified soft docking method for proteins and peptides
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作者 Jun Mei WANG Li Rong CHEN +1 位作者 Fan JING Xiao Jie XU(Department of chemistry and Weixin Institute of Natural Medicine,Peking University, Beijing 100871)(Department of Technical Physics, Peking University, Beijing 100871)(Department of Biophysics, University 《Chinese Chemical Letters》 SCIE CAS CSCD 1997年第7期615-618,共4页
A modified two-stage soft-docking procedure was developed for the theoretic researches on the recognition of protein-protein or protein-peptide complexes. Some systems have been used to test our program and the result... A modified two-stage soft-docking procedure was developed for the theoretic researches on the recognition of protein-protein or protein-peptide complexes. Some systems have been used to test our program and the results are encouraging. 展开更多
关键词 A modified soft docking method for proteins and peptides
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Protein Flexibility and Multiple Docking in Ligand Docking and Virtual Screening to the BRAF(TypeⅠ1/2)Inhibitors
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作者 王路 张艳敏 +4 位作者 卢帅 唐伟方 陈亚东 陆涛 刘海春 《Chinese Journal of Structural Chemistry》 SCIE CAS CSCD 2018年第7期1057-1070,共14页
BRAF has been recognized as a promising target for cancer therapy. A number of crystal structures have been published. Molecular docking is one of the most effective techniques in the field of computer-aided drug des... BRAF has been recognized as a promising target for cancer therapy. A number of crystal structures have been published. Molecular docking is one of the most effective techniques in the field of computer-aided drug design(CADD). Appropriate protein conformation and docking method are essential for the successful virtual screening experiments. One approach considering protein flexibility and multiple docking methods was proposed in this study. Six DFG-in/αC-helix-out crystal structures of BRAF, three docking programs(Glide, GOLD and Ligand Fit) and 12 scoring functions were applied for the best combination by judging from the results of pose prediction and retrospective virtual screening(VS). The most accurate results(mean RMSD of about 0.6 A) of pose prediction were obtained with two complex structures(PDB: 3 C4 C and 3 SKC) using Glide SP. From the retrospective VS, the most active compounds were identified by using the complex structure of 3 SKC, indicated by a ROC/AUC score of 0.998 and an EF of 20.6 at 5% of the database screen with Glide-SP. On the whole, PDB 3 SKC could achieve a higher rate of correct reproduction, a better enrichment and more diverse compounds. A comparison of 3 SKC and the other X-ray crystal structures led to a rationale for the docking results. PDB 3 SKC could achieve a broad range of sulfonamide substitutions through an expanded hydrophobic pocket formed by a further shift of the αC-helix. Our study emphasized the necessity and significance of protein flexibility and scoring functions in both ligand docking and virtual screening. 展开更多
关键词 BRAF type 1/2 inhibitors protein flexibility multiple docking methods pose prediction virtual screening
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