Structure-thermodynamics-relationships of hepatitis C viral NS3 protease inhibitors

被引:3
作者
Wypych, Rachel M. [1 ]
LaPlante, Steven R. [2 ]
White, Peter W. [3 ,4 ]
Martin, Stephen F. [1 ]
机构
[1] Univ Texas Austin, Dept Chem, 105 E 24th St Stn A5300, Austin, TX 78712 USA
[2] Univ Quebec, INRS Ctr Armand Frappier Sante & Biotechnol, 531 Blvd Prairies, Laval, PQ H7V 1B7, Canada
[3] Boehringer Ingelheim Canada Ltd, Res & Dev, 2100 Rue Cunard, Laval, PQ H7S 2G5, Canada
[4] Paraza Pharma Inc, 2525 Ave Marie Curie, Montreal, PQ H4S 2E1, Canada
基金
加拿大自然科学与工程研究理事会;
关键词
Molecular recognition; Protein-ligand interactions; Isothermal titration calorimetry; Thermodynamics; Structure-thermodynamics relationships; ENTHALPY-ENTROPY COMPENSATION; DOUBLE-MUTANT CYCLES; LIGAND-BINDING; PEPTIDE INHIBITORS; DESIGN; DOMAIN; NMR; RECOGNITION; ENERGETICS; DISCOVERY;
D O I
10.1016/j.ejmech.2020.112195
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
Thermodynamic parameters were determined for structurally-related inhibitors of HCV NS3 protease to assess how binding entropies and enthalpies vary with incremental changes at the P2 and P3 inhibitor subsites. Changing the heterocyclic substituent at P2 from a pyridyl to a 7-methoxy-2-phenyl-4-quinolyl group leads to a 710-fold increase in affinity. Annelating a benzene ring onto a pyridine ring leads to quinoline-derived inhibitors having higher affinities, but the individual enthalpy and entropy contributions are markedly different for each ligand pair. Introducing a phenyl group at C2 of the heterocyclic ring at P2 uniformly leads to higher affinity analogs with more favorable binding entropies, while adding a methoxy group at C7 of the quinoline ring at P2 provides derivatives with more favorable binding enthalpies. Significant enthalpy/entropy compensation is observed for structural changes made to inhibitors lacking a 2-phenyl substituent, whereas favorable changes in both binding enthalpies and entropies accompany structural modifications when a 2-phenyl group is present. Overall, binding energetics of inhibitors having a 2-phenyl-4-quinolyl group at P2 are dominated by entropic effects, whereas binding of the corresponding norphenyl analogs are primarily enthalpy driven. Notably, the reversal from an entropy driven association to an enthalpy driven one for this set of inhibitors also correlates with alternate binding modes. When the steric bulk of the side chain at P3 is increased from a hydrogen atom to a tert-butyl group, there is a 770-fold improvement in affinity. The 30-fold increase resulting from the first methyl group is solely the consequence of a more favorable change in entropy, whereas subsequent additions of methyl groups leads to modest increases in affinity that arise primarily from incremental improvements in binding enthalpies accompanied with smaller favorable entropic contributions. Crown Copyright (c) 2020 Published by Elsevier Masson SAS. All rights reserved.
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页数:9
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共 40 条
[1]   Computer Aided Drug Design: Success and Limitations [J].
Baig, Mohammad Hassan ;
Ahmad, Khurshid ;
Roy, Sudeep ;
Ashraf, Jalaluddin Mohammad ;
Adil, Mohd ;
Siddiqui, Mohammad Haris ;
Khan, Saif ;
Kamal, Mohammad Amjad ;
Provaznik, Ivo ;
Choi, Inho .
CURRENT PHARMACEUTICAL DESIGN, 2016, 22 (05) :572-581
[2]   Inhibitor binding induces active site stabilization of the HCVNS3 protein serine protease domain [J].
Barbato, G ;
Cicero, DO ;
Cordier, F ;
Narjes, F ;
Gerlach, B ;
Sambucini, S ;
Grzesiek, S ;
Matassa, VG ;
De Francesco, R ;
Bazzo, R .
EMBO JOURNAL, 2000, 19 (06) :1195-1206
[3]   Ligand preorganization may be accompanied by entropic penalties in protein-ligand interactions [J].
Benfield, Aaron P. ;
Teresk, Martin G. ;
Plake, Hilary R. ;
DeLorbe, John E. ;
Millspaugh, Laura E. ;
Martin, Stephen F. .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2006, 45 (41) :6830-6835
[4]   Dissecting the Hydrophobic Effect on the Molecular Level: The Role of Water, Enthalpy, and Entropy in Ligand Binding to Thermolysin [J].
Biela, Adam ;
Nasief, Nader N. ;
Betz, Michael ;
Heine, Andreas ;
Hangauer, David ;
Klebe, Gerhard .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2013, 52 (06) :1822-1828
[5]   Entropy-Enthalpy Compensation: Role and Ramifications in Biomolecular Ligand Recognition and Design [J].
Chodera, John D. ;
Mobley, David L. .
ANNUAL REVIEW OF BIOPHYSICS, VOL 42, 2013, 42 :121-142
[6]   Chemical double-mutant cycles: dissecting non-covalent interactions [J].
Cockroft, Scott L. ;
Hunter, Christopher A. .
CHEMICAL SOCIETY REVIEWS, 2007, 36 (02) :172-188
[7]   Calorimetric and structural studies of 1,2,3-trisubstituted cyclopropanes as conformationally constrained peptide inhibitors of Src SH2 domain binding [J].
Davidson, JP ;
Lubman, O ;
Rose, T ;
Waksman, G ;
Martin, SF .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2002, 124 (02) :205-215
[8]   Thermodynamic and Structural Effects of Macrocyclic Constraints in Protein-Ligand Interactions [J].
DeLorbe, John E. ;
Clements, John H. ;
Whiddon, Benjamin B. ;
Martin, Stephen F. .
ACS MEDICINAL CHEMISTRY LETTERS, 2010, 1 (08) :448-452
[9]   Thermodynamic and Structural Effects of Conformational Constraints in Protein-Ligand Interactions. Entropic Paradoxy Associated with Ligand Preorganization [J].
DeLorbe, John E. ;
Clements, John H. ;
Teresk, Martin G. ;
Benfield, Aaron P. ;
Plake, Hilary R. ;
Millspaugh, Laura E. ;
Martin, Stephen F. .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2009, 131 (46) :16758-16770
[10]   THE ENTROPIC COST OF BOUND WATER IN CRYSTALS AND BIOMOLECULES [J].
DUNITZ, JD .
SCIENCE, 1994, 264 (5159) :670-670