A computational model of the inhibition of Mycobacterium tuberculosis ATPase by a new drug candidate R207910

Diarylquinolines (DARQs) are a new class of potent inhibitors of the ATPase of Mycobacterium tuberculosis. We have created a homology model of a binding site for this class of compounds located on the contact area of the a‐subunit (gene atpB) and c‐subunits (gene atpE) of Mycobacterium tuberculosis...

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Published inProteins, structure, function, and bioinformatics Vol. 67; no. 4; pp. 971 - 980
Main Authors de Jonge, Marc R., Koymans, Luc H.M., Guillemont, Jérôme E.G., Koul, Anil, Andries, Koen
Format Journal Article
LanguageEnglish
Published Hoboken Wiley Subscription Services, Inc., A Wiley Company 01.06.2007
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Summary:Diarylquinolines (DARQs) are a new class of potent inhibitors of the ATPase of Mycobacterium tuberculosis. We have created a homology model of a binding site for this class of compounds located on the contact area of the a‐subunit (gene atpB) and c‐subunits (gene atpE) of Mycobacterium tuberculosis ATPase. The binding pocket that was identified from the analysis of the homology model is formed by 4 helices of three c‐subunits and 2 helices of the a‐subunit. The lead compound of the DARQ series, R207910, was docked into the pocket using a simulated annealing, multiple conformer, docking algorithm. Different stereoisomers were treated separately. The best docking pose for each stereoisomer was optimized by molecular dynamics simulation on the 5300 atoms of the binding region and ligand. The interaction energies in the computed complexes enable us to rank the different stereoisomers in order of interaction strength with the ATPase binding pockets. We propose that the activity of R207910 against Mycobacterium tuberculosis is based on interference of the compound with the escapement geometry of the proton transfer chain. Upon binding the compound mimicks the conserved Arg‐186 residue of the a‐subunit and interacts in its place with the conserved acidic residue Glu‐61 of the c‐subunit. This mode of action is corroborated by the good agreement between the computed interaction energies and the observed pattern of stereo‐specificity in the model of the binding region. Proteins 2007. © 2007 Wiley‐Liss, Inc.
Bibliography:ark:/67375/WNG-J6VW8M0J-J
istex:1C4DCDE094A21E1CA9B08EE783B55E79D160DC5A
ArticleID:PROT21376
ObjectType-Article-1
SourceType-Scholarly Journals-1
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content type line 23
ISSN:0887-3585
1097-0134
DOI:10.1002/prot.21376