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PDB ID Mentions in PubMed Central Article count: 1

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PDB ID Mentions in PubMed Central

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A knowledge-guided strategy for improving the accuracy of scoring functions in binding affinity prediction.

(2010) BMC Bioinformatics 11

PubMed: 20398404 | PubMedCentral: PMC2868011 | DOI: 10.1186/1471-2105-11-193

Table 4 Information on the six pairs of trypsin complexes with the highest similarities The query complex The reference complex PDB Code -log K d (exp) X-Score+ KGS X-Score PDB Code -log K d (exp) Sim... larity 1G3C 5.80 5.54 5.60 1G3E 5.38 0.67 1G3E 5.38 5.64 5.52 1G3C 5.80 0.67 1O2J 6.92 6.92 6.08 1O2K 6.92 0.58 1O2K 6.92 6.92 6.08 1O2J 6.92 0.58 1O2O 6.36 7.30 6.27 1O2K 6.92 0.58 1O38 6.82 6.48 6.33 1O2O 6.36 0.58 The above analysis suggests that failure of the KGS strategy in this case is caused directly by the intrinsic inaccuracy of the employed scoring function.

Table 1 PDB codes of the protein-ligand complexes in the three test sets HIV protease complexes ( N = 112) 1GNM , 1GNN , 1GNO , 1A30 , 1A9M , 1AAQ , 1AJV , 1AJX , 1B6J , 1B6K , 1B6L , 1B6M , 1BDQ , 1BV7 , 1BV9 , 1BWA , 1BWB , 1C70 , 1D4K , 1D4L , 1D4Y , 1DIF , 1DMP , 1G2K , 1G35 , 1HBV , 1HEG , 1HIH , 1HII , 1HOS , 1HPO , 1HPS , 1HPV , 1HPX , 1HSH , 1HVH , 1HVI , 1HVJ , 1HVK , 1HVL , 1HVR , 1HVS , 1HWR , 1HXB , 1HXW , 1IIQ , 1IZH , 1IZI , 1LZQ , 1MES , 1MET , 1MEU , 1MRW , 1MRX , 1MSM , 1MSN , 1MTR , 1NH0 , 1ODY , 1OHR , 1PRO , 1QBR , 1QBS , 1QBT , 1QBU , 1SBG , 1SDT , 1SDU , 1SDV , 1SGU , 1SH9 , 1T7J , 1W5V , 1W5W , 1W5X , 1W5Y , 1Z1H , 1Z1R , 1ZP8 , 1ZPA , 1ZSF , 1ZSR , 2AOC , 2AOD , 2AOE , 2AQU , 2AVM , 2AVO , 2AVQ , 2AVS , 2AVV , 2BPV , 2BPY , 2BQV , 2F80 , 2F81 , 2F8G , 2FGU , 2FGV , 2HB3 , 2I0A , 2I0D , 7HVP , 7UPJ , 2HS2 , 2AOG , 2HS1 , 1A94 , 1AID , 1KZK , 1TCX , 3AID Trypsin complexes ( N = 73) 1C1R , 1C5P , 1C5Q , 1C5S , 1C5T , 1CE5 , 1F0T , 1F0U , 1K1I , 1K1J , 1K1L , 1K1M , 1K1N , 1OSS , 1PPC , 1PPH , 1QB1 , 1QB6 , 1QB9 , 1QBN , 1QBO , 1TNG , 1TNH , 1TNI , 1TNJ , 1TNK , 1TNL , 1V2J , 1V2K , 1V2L , 1V2N , 1V2Q , 1V2R , 1V2S , 1V2T , 1V2U , 1V2W , 2A31 , 2BZA , 2FX6 , 1BRA , 1G3B , 1G3C , 1G3D , 1G3E , 1GHZ , 1GI1 , 1GI4 , 1GI6 , 1GJ6 , 1J16 , 1J17 , 1O2H , 1O2J , 1O2K , 1O2N , 1O2O , 1O2Q , 1O2S , 1O2W , 1O2X , 1O2Z , 1O30 , 1O33 , 1O36 , 1O38 , 1O3D , 1O3F , 1O3H , 1O3I , 1O3J , 1O3K , 1V2O Carbonic anhydrase complexes ( N = 44) 1BN1 , 1BN3 , 1BN4 , 1BNN , 1BNQ , 1BNT , 1BNU , 1BNV , 1BNW , 1A42 , 1AVN , 1BCD , 1CIL , 1CIM , 1CIN , 1CNW , 1CNX , 1CNY , 1G1D , 1G45 , 1G46 , 1G48 , 1G4J , 1G4O , 1G52 , 1G53 , 1G54 , 1I9L , 1I9M , 1I9N , 1I9O , 1I9P , 1I9Q , 1IF7 , 1IF8 , 1OKL , 1TTM , 1XPZ , 1XQ0 , 1YDA , 1YDB , 1YDD , 2EZ7 , 2H4N In addition, a set of putative binding poses were prepared for the ligand molecule in each complex in all three test sets.

Publication Year: 2010