Literature DB >> 17474129

Evaluation of the substrate envelope hypothesis for inhibitors of HIV-1 protease.

Sripriya Chellappan1, Visvaldas Kairys, Miguel X Fernandes, Celia Schiffer, Michael K Gilson.   

Abstract

Crystallographic data show that various substrates of HIV protease occupy a remarkably uniform region within the binding site; this region has been termed the substrate envelope. It has been suggested that an inhibitor that fits within the substrate envelope should tend to evade viral resistance because a protease mutation that reduces the affinity of the inhibitor will also tend to reduce the affinity of substrate, and will hence decrease the activity of the enzyme. Accordingly, inhibitors that fit the substrate envelope better should be less susceptible to clinically observed resistant mutations, since these must also allow substrates to bind. The present study describes a quantitative measure of the volume of a bound inhibitor falling outside the substrate envelope, and observes that this quantity correlates with the inhibitor's losses in affinity to clinically relevant mutants. This measure may thus be useful as a penalty function in the design of robust HIV protease inhibitors. (c) 2007 Wiley-Liss, Inc.

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Year:  2007        PMID: 17474129     DOI: 10.1002/prot.21431

Source DB:  PubMed          Journal:  Proteins        ISSN: 0887-3585


  23 in total

1.  Evaluating the substrate-envelope hypothesis: structural analysis of novel HIV-1 protease inhibitors designed to be robust against drug resistance.

Authors:  Madhavi N L Nalam; Akbar Ali; Michael D Altman; G S Kiran Kumar Reddy; Sripriya Chellappan; Visvaldas Kairys; Aysegül Ozen; Hong Cao; Michael K Gilson; Bruce Tidor; Tariq M Rana; Celia A Schiffer
Journal:  J Virol       Date:  2010-03-17       Impact factor: 5.103

2.  Drug resistance against HCV NS3/4A inhibitors is defined by the balance of substrate recognition versus inhibitor binding.

Authors:  Keith P Romano; Akbar Ali; William E Royer; Celia A Schiffer
Journal:  Proc Natl Acad Sci U S A       Date:  2010-11-17       Impact factor: 11.205

3.  HIV-1 protease inhibitors from inverse design in the substrate envelope exhibit subnanomolar binding to drug-resistant variants.

Authors:  Michael D Altman; Akbar Ali; G S Kiran Kumar Reddy; Madhavi N L Nalam; Saima Ghafoor Anjum; Hong Cao; Sripriya Chellappan; Visvaldas Kairys; Miguel X Fernandes; Michael K Gilson; Celia A Schiffer; Tariq M Rana; Bruce Tidor
Journal:  J Am Chem Soc       Date:  2008-04-16       Impact factor: 15.419

4.  Nine crystal structures determine the substrate envelope of the MDR HIV-1 protease.

Authors:  Zhigang Liu; Yong Wang; Joseph Brunzelle; Iulia A Kovari; Ladislau C Kovari
Journal:  Protein J       Date:  2011-03       Impact factor: 2.371

Review 5.  Structures of influenza A proteins and insights into antiviral drug targets.

Authors:  Kalyan Das; James M Aramini; Li-Chung Ma; Robert M Krug; Eddy Arnold
Journal:  Nat Struct Mol Biol       Date:  2010-04-11       Impact factor: 15.369

Review 6.  Winning the arms race by improving drug discovery against mutating targets.

Authors:  Amy C Anderson
Journal:  ACS Chem Biol       Date:  2011-11-11       Impact factor: 5.100

7.  Discovery and design of DNA and RNA ligase inhibitors in infectious microorganisms.

Authors:  Robert V Swift; Rommie E Amaro
Journal:  Expert Opin Drug Discov       Date:  2009-12-01       Impact factor: 6.098

8.  Dynamics of preferential substrate recognition in HIV-1 protease: redefining the substrate envelope.

Authors:  Ayşegül Ozen; Türkan Haliloğlu; Celia A Schiffer
Journal:  J Mol Biol       Date:  2011-07-22       Impact factor: 5.469

9.  Identification of structural mechanisms of HIV-1 protease specificity using computational peptide docking: implications for drug resistance.

Authors:  Sidhartha Chaudhury; Jeffrey J Gray
Journal:  Structure       Date:  2009-12-09       Impact factor: 5.006

10.  Toward the design of mutation-resistant enzyme inhibitors: further evaluation of the substrate envelope hypothesis.

Authors:  Visvaldas Kairys; Michael K Gilson; Viney Lather; Celia A Schiffer; Miguel X Fernandes
Journal:  Chem Biol Drug Des       Date:  2009-09       Impact factor: 2.817

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