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Effects of Hinge-region Natural Polymorphisms on Human Immunodeficiency Virus-Type 1 Protease Structure, Dynamics, and Drug Pressure Evolution.
Liu, Zhanglong; Huang, Xi; Hu, Lingna; Pham, Linh; Poole, Katye M; Tang, Yan; Mahon, Brian P; Tang, Wenxing; Li, Kunhua; Goldfarb, Nathan E; Dunn, Ben M; McKenna, Robert; Fanucci, Gail E.
Afiliación
  • Liu Z; From the Department of Chemistry, University of Florida, Gainesville, Florida 32611 and.
  • Huang X; From the Department of Chemistry, University of Florida, Gainesville, Florida 32611 and.
  • Hu L; From the Department of Chemistry, University of Florida, Gainesville, Florida 32611 and.
  • Pham L; From the Department of Chemistry, University of Florida, Gainesville, Florida 32611 and.
  • Poole KM; the Department of Biochemistry and Molecular Biology, University of Florida, Gainesville, Florida 32610.
  • Tang Y; the Department of Biochemistry and Molecular Biology, University of Florida, Gainesville, Florida 32610.
  • Mahon BP; the Department of Biochemistry and Molecular Biology, University of Florida, Gainesville, Florida 32610.
  • Tang W; the Department of Biochemistry and Molecular Biology, University of Florida, Gainesville, Florida 32610.
  • Li K; From the Department of Chemistry, University of Florida, Gainesville, Florida 32611 and.
  • Goldfarb NE; the Department of Biochemistry and Molecular Biology, University of Florida, Gainesville, Florida 32610.
  • Dunn BM; the Department of Biochemistry and Molecular Biology, University of Florida, Gainesville, Florida 32610.
  • McKenna R; the Department of Biochemistry and Molecular Biology, University of Florida, Gainesville, Florida 32610.
  • Fanucci GE; From the Department of Chemistry, University of Florida, Gainesville, Florida 32611 and fanucci@chem.ufl.edu.
J Biol Chem ; 291(43): 22741-22756, 2016 Oct 21.
Article en En | MEDLINE | ID: mdl-27576689
Multidrug resistance to current Food and Drug Administration-approved HIV-1 protease (PR) inhibitors drives the need to understand the fundamental mechanisms of how drug pressure-selected mutations, which are oftentimes natural polymorphisms, elicit their effect on enzyme function and resistance. Here, the impacts of the hinge-region natural polymorphism at residue 35, glutamate to aspartate (E35D), alone and in conjunction with residue 57, arginine to lysine (R57K), are characterized with the goal of understanding how altered salt bridge interactions between the hinge and flap regions are associated with changes in structure, motional dynamics, conformational sampling, kinetic parameters, and inhibitor affinity. The combined results reveal that the single E35D substitution leads to diminished salt bridge interactions between residues 35 and 57 and gives rise to the stabilization of open-like conformational states with overall increased backbone dynamics. In HIV-1 PR constructs where sites 35 and 57 are both mutated (e.g. E35D and R57K), x-ray structures reveal an altered network of interactions that replace the salt bridge thus stabilizing the structural integrity between the flap and hinge regions. Despite the altered conformational sampling and dynamics when the salt bridge is disrupted, enzyme kinetic parameters and inhibition constants are similar to those obtained for subtype B PR. Results demonstrate that these hinge-region natural polymorphisms, which may arise as drug pressure secondary mutations, alter protein dynamics and the conformational landscape, which are important thermodynamic parameters to consider for development of inhibitors that target for non-subtype B PR.
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Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Polimorfismo Genético / Proteasa del VIH / VIH-1 / Evolución Molecular / Mutación Missense / Simulación de Dinámica Molecular Límite: Humans Idioma: En Revista: J Biol Chem Año: 2016 Tipo del documento: Article

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Polimorfismo Genético / Proteasa del VIH / VIH-1 / Evolución Molecular / Mutación Missense / Simulación de Dinámica Molecular Límite: Humans Idioma: En Revista: J Biol Chem Año: 2016 Tipo del documento: Article
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