Literature DB >> 16851048

Resistant mechanism against nelfinavir of human immunodeficiency virus type 1 proteases.

Hirotaka Ode1, Masami Ota, Saburo Neya, Masayuki Hata, Wataru Sugiura, Tyuji Hoshino.   

Abstract

Inhibitors against human immunodeficiency virus type-1 (HIV-1) proteases are finely effective for anti-HIV-1 treatments. However, the therapeutic efficacy is reduced by the rapid emergence of inhibitor-resistant variants of the protease. Among patients who failed in the inhibitor nelfinavir (NFV) treatment, D30N, N88D, and L90M mutations of HIV-1 protease are often observed. Despite the serious clinical problem, it is not clear how these mutations, especially nonactive site mutations N88D and L90M, affect the affinity of NFV or why they cause the resistance to NFV. In this study, we executed molecular dynamics simulations of the NFV-bound proteases in the wild-type and D30N, N88D, D30N/N88D, and L90M mutants. Our simulations clarified the conformational change at the active site of the protease and the change of the affinity with NFV for all of these mutations, even though the 88th and 90th residues are not located in the NFV-bound cavity and not able to directly interact with NFV. D30N mutation causes the disappearance of the hydrogen bond between the m-phenol group of NFV and the 30th residue. N88D mutation alters the active site conformation slightly and induces a favorable hydrophobic contact. L90M mutation dramatically changes the conformation at the flap region and leads to an unfavorable distortion of the binding pocket of the protease, although 90M is largely far apart from the flap region. Furthermore, the changes of binding energies of the mutants from the wild-type protease are shown to be correlated with the mutant resistivity previously reported by the phenotypic experiments.

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Year:  2005        PMID: 16851048     DOI: 10.1021/jp046860+

Source DB:  PubMed          Journal:  J Phys Chem B        ISSN: 1520-5207            Impact factor:   2.991


  10 in total

1.  The effect of clade-specific sequence polymorphisms on HIV-1 protease activity and inhibitor resistance pathways.

Authors:  Rajintha M Bandaranayake; Madhavi Kolli; Nancy M King; Ellen A Nalivaika; Annie Heroux; Junko Kakizawa; Wataru Sugiura; Celia A Schiffer
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2.  Insights into amprenavir resistance in E35D HIV-1 protease mutation from molecular dynamics and binding free-energy calculations.

Authors:  Heike Meiselbach; Anselm H C Horn; Thomas Harrer; Heinrich Sticht
Journal:  J Mol Model       Date:  2006-06-23       Impact factor: 1.810

3.  Optimal drug cocktail design: methods for targeting molecular ensembles and insights from theoretical model systems.

Authors:  Mala L Radhakrishnan; Bruce Tidor
Journal:  J Chem Inf Model       Date:  2008-05-27       Impact factor: 4.956

4.  Drug-resistant molecular mechanism of CRF01_AE HIV-1 protease due to V82F mutation.

Authors:  Xiaoqing Liu; Zhilong Xiu; Ce Hao
Journal:  J Comput Aided Mol Des       Date:  2009-02-15       Impact factor: 3.686

5.  Deciphering Complex Mechanisms of Resistance and Loss of Potency through Coupled Molecular Dynamics and Machine Learning.

Authors:  Florian Leidner; Nese Kurt Yilmaz; Celia A Schiffer
Journal:  J Chem Theory Comput       Date:  2021-03-30       Impact factor: 6.006

6.  HIV-1 Protease: Structural Perspectives on Drug Resistance.

Authors:  Irene T Weber; Johnson Agniswamy
Journal:  Viruses       Date:  2009-12-03       Impact factor: 5.048

7.  Structural studies on molecular mechanisms of Nelfinavir resistance caused by non-active site mutation V77I in HIV-1 protease.

Authors:  Ankita Gupta; Salma Jamal; Sukriti Goyal; Ritu Jain; Divya Wahi; Abhinav Grover
Journal:  BMC Bioinformatics       Date:  2015-12-16       Impact factor: 3.169

8.  Molecular dynamics simulation in virus research.

Authors:  Hirotaka Ode; Masaaki Nakashima; Shingo Kitamura; Wataru Sugiura; Hironori Sato
Journal:  Front Microbiol       Date:  2012-07-19       Impact factor: 5.640

9.  Multiple independent origins of a protease inhibitor resistance mutation in salvage therapy patients.

Authors:  Amit Kapoor; Beth Shapiro; Robert W Shafer; Nancy Shulman; Soo-Yon Rhee; Eric L Delwart
Journal:  Retrovirology       Date:  2008-01-25       Impact factor: 4.602

10.  Inhibition Profiling of Retroviral Protease Inhibitors Using an HIV-2 Modular System.

Authors:  Mohamed Mahdi; Zsófia Szojka; János András Mótyán; József Tőzsér
Journal:  Viruses       Date:  2015-11-27       Impact factor: 5.048

  10 in total

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