1S9G image
Entry Detail
PDB ID:
1S9G
Keywords:
Title:
CRYSTAL STRUCTURE OF HIV-1 REVERSE TRANSCRIPTASE (RT) IN COMPLEX WITH JANSSEN-R120394.
Biological Source:
Host Organism:
PDB Version:
Deposition Date:
2004-02-04
Release Date:
2004-05-11
Method Details:
Experimental Method:
Resolution:
2.80 Å
R-Value Free:
0.31
R-Value Work:
0.24
R-Value Observed:
0.24
Space Group:
C 1 2 1
Macromolecular Entities
Polymer Type:polypeptide(L)
Description:POL polyprotein [Contains: Reverse transcriptase]
Mutations:YES
Chain IDs:A
Chain Length:560
Number of Molecules:1
Biological Source:Human immunodeficiency virus 1
Polymer Type:polypeptide(L)
Description:POL polyprotein [Contains: Reverse transcriptase]
Mutations:YES
Chain IDs:B
Chain Length:430
Number of Molecules:1
Biological Source:Human immunodeficiency virus 1
Ligand Molecules
Primary Citation
Roles of Conformational and Positional Adaptability in Structure-Based Design of TMC125-R165335 (Etravirine) and Related Non-nucleoside Reverse Transcriptase Inhibitors That Are Highly Potent and Effective against Wild-Type and Drug-Resistant HIV-1 Variants.
Das, K, Clark, A.D, Lewi, P.J, Heeres, J, De Jonge, M.R, Koymans, L.M, Vinkers, H.M, Daeyaert, F, Ludovici, D.W, Kukla, M.J, De Corte, B, Kavash, R.W, Ho, C.Y, Ye, H, Lichtenstein, M.A, Andries, K, Pauwels, R, Boyer, P.L, Clark, P, Hughes, S.H, Janssen, P.A, Arnold, E, Ding, J, Das, K, Moereels, H, Koymans, L, Andries, K, Janssen, P.A.J, Hughes, S.H, Arnold, E, Ding, J, Das, K, Tantillo, C, Zhang, W, Clark Jr, A.D, Jessen, S, Lu, X, Hsiou, Y, Jacobo-Molina, A, Andries, K, Pauwels, R, Moereels, H, Koymans, L, Janssen, P.A.J, Smith Jr, R.H, Kroeger Koepke, M, Michejda, C.J, Hughes, S.H, Arnold, E, Das, K, Ding, J, Hsiou, Y, Clark Jr, A.D, Moereels, H, Koymans, L, Andries, K, Pauwels, R, Janssen, P.A, Boyer, P.L, Clark, P, Smith Jr, R.H, Kroeger Smith, M.B, Michejda, C.J, Hughes, S.H, Arnold, E, Ding, J, Das, K, Hsiou, Y, Sarafianos, S.G, Clark Jr, A.D, Jacobo-Molina, A, Tantillo, C, Hughes, S.H, Arnold, E, Ludovici, D.W, Kavash, R.W, Kukla, M.J, Ho, C.Y, Ye, H, De Corte, B.L, Andries, K, De Bethune, M, Azijn, H, Pauwels, R, Moereels, H.E, Heeres, J, Koymans, L.M, De Jonge, M.R, Van Aken, K.J, Daeyaert, F.F, Lewi, P.J, Das, K, Arnold, E, Janssen, P.A.Show
J.Med.Chem. 47 2550 2560 (2004)
PMID: 15115397 DOI: 10.1021/jm030558s

Abstact

Anti-AIDS drug candidate and non-nucleoside reverse transcriptase inhibitor (NNRTI) TMC125-R165335 (etravirine) caused an initial drop in viral load similar to that observed with a five-drug combination in naïve patients and retains potency in patients infected with NNRTI-resistant HIV-1 variants. TMC125-R165335 and related anti-AIDS drug candidates can bind the enzyme RT in multiple conformations and thereby escape the effects of drug-resistance mutations. Structural studies showed that this inhibitor and other diarylpyrimidine (DAPY) analogues can adapt to changes in the NNRTI-binding pocket in several ways: (1). DAPY analogues can bind in at least two conformationally distinct modes; (2). within a given binding mode, torsional flexibility ("wiggling") of DAPY analogues permits access to numerous conformational variants; and (3). the compact design of the DAPY analogues permits significant repositioning and reorientation (translation and rotation) within the pocket ("jiggling"). Such adaptations appear to be critical for potency against wild-type and a wide range of drug-resistant mutant HIV-1 RTs. Exploitation of favorable components of inhibitor conformational flexibility (such as torsional flexibility about strategically located chemical bonds) can be a powerful drug design concept, especially for designing drugs that will be effective against rapidly mutating targets.

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Primary Citation of related structures