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Paradigm development: Comparative and predictive 3D modeling of HIV-1 Virion Infectivity Factor (vif)

Obtaining structural information about Vif is of interest for several reasons that include the study of the interaction of Vif with APOBEC3G, a resistance factor. Vif is a potential drug target and its function is essential for the HIV-1 infectivity process. To study Vif mechanism of action, we need...

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Autores principales: Balaji, Seetharaaman, Kalpana, Rangaswamy, Shapshak, Paul
Formato: Texto
Lenguaje:English
Publicado: Biomedical Informatics Publishing Group 2006
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1891711/
https://www.ncbi.nlm.nih.gov/pubmed/17597910
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author Balaji, Seetharaaman
Kalpana, Rangaswamy
Shapshak, Paul
author_facet Balaji, Seetharaaman
Kalpana, Rangaswamy
Shapshak, Paul
author_sort Balaji, Seetharaaman
collection PubMed
description Obtaining structural information about Vif is of interest for several reasons that include the study of the interaction of Vif with APOBEC3G, a resistance factor. Vif is a potential drug target and its function is essential for the HIV-1 infectivity process. To study Vif mechanism of action, we need to decipher its structure. Pivotal in this approach is the painstaking prediction of its protein structure. The three-dimensional (3D) crystal structure for Vif has not been established. In order to understand its mechanism of action, information on the structure of Vif is very much needed. Therefore we undertook this study based on the hypothesis that information from structurally homologous proteins can be used to predict the 3D structure of Vif by computer modeling and threading. As a result the structure of HIV-1 Vif has been modeled and deposited in the theoretical models section and accepted with the PDB code 1VZF. Here, we present the results of the comparative modeling strategy we used to predict the 3D structure of Vif.
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spelling pubmed-18917112007-06-27 Paradigm development: Comparative and predictive 3D modeling of HIV-1 Virion Infectivity Factor (vif) Balaji, Seetharaaman Kalpana, Rangaswamy Shapshak, Paul Bioinformation Hypothesis Obtaining structural information about Vif is of interest for several reasons that include the study of the interaction of Vif with APOBEC3G, a resistance factor. Vif is a potential drug target and its function is essential for the HIV-1 infectivity process. To study Vif mechanism of action, we need to decipher its structure. Pivotal in this approach is the painstaking prediction of its protein structure. The three-dimensional (3D) crystal structure for Vif has not been established. In order to understand its mechanism of action, information on the structure of Vif is very much needed. Therefore we undertook this study based on the hypothesis that information from structurally homologous proteins can be used to predict the 3D structure of Vif by computer modeling and threading. As a result the structure of HIV-1 Vif has been modeled and deposited in the theoretical models section and accepted with the PDB code 1VZF. Here, we present the results of the comparative modeling strategy we used to predict the 3D structure of Vif. Biomedical Informatics Publishing Group 2006-12-06 /pmc/articles/PMC1891711/ /pubmed/17597910 Text en © 2005 Biomedical Informatics Publishing Group This is an open-access article, which permits unrestricted use, distribution, and reproduction in any medium, for non-commercial purposes, provided the original author and source are credited.
spellingShingle Hypothesis
Balaji, Seetharaaman
Kalpana, Rangaswamy
Shapshak, Paul
Paradigm development: Comparative and predictive 3D modeling of HIV-1 Virion Infectivity Factor (vif)
title Paradigm development: Comparative and predictive 3D modeling of HIV-1 Virion Infectivity Factor (vif)
title_full Paradigm development: Comparative and predictive 3D modeling of HIV-1 Virion Infectivity Factor (vif)
title_fullStr Paradigm development: Comparative and predictive 3D modeling of HIV-1 Virion Infectivity Factor (vif)
title_full_unstemmed Paradigm development: Comparative and predictive 3D modeling of HIV-1 Virion Infectivity Factor (vif)
title_short Paradigm development: Comparative and predictive 3D modeling of HIV-1 Virion Infectivity Factor (vif)
title_sort paradigm development: comparative and predictive 3d modeling of hiv-1 virion infectivity factor (vif)
topic Hypothesis
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1891711/
https://www.ncbi.nlm.nih.gov/pubmed/17597910
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AT shapshakpaul paradigmdevelopmentcomparativeandpredictive3dmodelingofhiv1virioninfectivityfactorvif