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An Investigation of G-Quadruplex Structural Polymorphism in the Human Telomere Using a Combined Approach of Hydrodynamic Bead Modeling and Molecular Dynamics Simulation
[Image: see text] Guanine-rich oligonucleotides can adopt noncanonical tertiary structures known as G-quadruplexes, which can exist in different forms depending on experimental conditions. High-resolution structural methods, such as X-ray crystallography and NMR spectroscopy, have been of limited us...
Autores principales: | , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
American Chemical
Society
2014
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Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4032189/ https://www.ncbi.nlm.nih.gov/pubmed/24779348 http://dx.doi.org/10.1021/jp502213y |
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author | Le, Huy T. Dean, William L. Buscaglia, Robert Chaires, Jonathan B. Trent, John O. |
author_facet | Le, Huy T. Dean, William L. Buscaglia, Robert Chaires, Jonathan B. Trent, John O. |
author_sort | Le, Huy T. |
collection | PubMed |
description | [Image: see text] Guanine-rich oligonucleotides can adopt noncanonical tertiary structures known as G-quadruplexes, which can exist in different forms depending on experimental conditions. High-resolution structural methods, such as X-ray crystallography and NMR spectroscopy, have been of limited usefulness in resolving the inherent structural polymorphism associated with G-quadruplex formation. The lack of, or the ambiguous nature of, currently available high-resolution structural data, in turn, has severely hindered investigations into the nature of these structures and their interactions with small-molecule inhibitors. We have used molecular dynamics in conjunction with hydrodynamic bead modeling to study the structures of the human telomeric G-quadruplex-forming sequences at the atomic level. We demonstrated that molecular dynamics can reproduce experimental hydrodynamic measurements and thus can be a powerful tool in the structural study of existing G-quadruplex sequences or in the prediction of new G-quadruplex structures. |
format | Online Article Text |
id | pubmed-4032189 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2014 |
publisher | American Chemical
Society |
record_format | MEDLINE/PubMed |
spelling | pubmed-40321892015-04-29 An Investigation of G-Quadruplex Structural Polymorphism in the Human Telomere Using a Combined Approach of Hydrodynamic Bead Modeling and Molecular Dynamics Simulation Le, Huy T. Dean, William L. Buscaglia, Robert Chaires, Jonathan B. Trent, John O. J Phys Chem B [Image: see text] Guanine-rich oligonucleotides can adopt noncanonical tertiary structures known as G-quadruplexes, which can exist in different forms depending on experimental conditions. High-resolution structural methods, such as X-ray crystallography and NMR spectroscopy, have been of limited usefulness in resolving the inherent structural polymorphism associated with G-quadruplex formation. The lack of, or the ambiguous nature of, currently available high-resolution structural data, in turn, has severely hindered investigations into the nature of these structures and their interactions with small-molecule inhibitors. We have used molecular dynamics in conjunction with hydrodynamic bead modeling to study the structures of the human telomeric G-quadruplex-forming sequences at the atomic level. We demonstrated that molecular dynamics can reproduce experimental hydrodynamic measurements and thus can be a powerful tool in the structural study of existing G-quadruplex sequences or in the prediction of new G-quadruplex structures. American Chemical Society 2014-04-29 2014-05-22 /pmc/articles/PMC4032189/ /pubmed/24779348 http://dx.doi.org/10.1021/jp502213y Text en Copyright © 2014 American Chemical Society |
spellingShingle | Le, Huy T. Dean, William L. Buscaglia, Robert Chaires, Jonathan B. Trent, John O. An Investigation of G-Quadruplex Structural Polymorphism in the Human Telomere Using a Combined Approach of Hydrodynamic Bead Modeling and Molecular Dynamics Simulation |
title | An Investigation
of G-Quadruplex Structural
Polymorphism in the Human Telomere Using a Combined Approach of Hydrodynamic
Bead Modeling and Molecular Dynamics Simulation |
title_full | An Investigation
of G-Quadruplex Structural
Polymorphism in the Human Telomere Using a Combined Approach of Hydrodynamic
Bead Modeling and Molecular Dynamics Simulation |
title_fullStr | An Investigation
of G-Quadruplex Structural
Polymorphism in the Human Telomere Using a Combined Approach of Hydrodynamic
Bead Modeling and Molecular Dynamics Simulation |
title_full_unstemmed | An Investigation
of G-Quadruplex Structural
Polymorphism in the Human Telomere Using a Combined Approach of Hydrodynamic
Bead Modeling and Molecular Dynamics Simulation |
title_short | An Investigation
of G-Quadruplex Structural
Polymorphism in the Human Telomere Using a Combined Approach of Hydrodynamic
Bead Modeling and Molecular Dynamics Simulation |
title_sort | investigation
of g-quadruplex structural
polymorphism in the human telomere using a combined approach of hydrodynamic
bead modeling and molecular dynamics simulation |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4032189/ https://www.ncbi.nlm.nih.gov/pubmed/24779348 http://dx.doi.org/10.1021/jp502213y |
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