Cargando…

Classification of G-Quadruplex DNA on the Basis of the Quadruplex Twist Angle and Planarity of G-Quartets

The present work is devoted to the analysis of the G-quadruplex DNA structure using the bioinformatics method. The interest towards quadruplex DNAs is determined by their involvement in the functioning of telomeres and onco-promoters as well as by the possibility to create on their basis aptamers an...

Descripción completa

Detalles Bibliográficos
Autores principales: Reshetnikov, R.V., Kopylov, A.M., Golovin, A.V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: A.I. Gordeyev 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3347588/
https://www.ncbi.nlm.nih.gov/pubmed/22649667
_version_ 1782232299253792768
author Reshetnikov, R.V.
Kopylov, A.M.
Golovin, A.V.
author_facet Reshetnikov, R.V.
Kopylov, A.M.
Golovin, A.V.
author_sort Reshetnikov, R.V.
collection PubMed
description The present work is devoted to the analysis of the G-quadruplex DNA structure using the bioinformatics method. The interest towards quadruplex DNAs is determined by their involvement in the functioning of telomeres and onco-promoters as well as by the possibility to create on their basis aptamers and nanostructures. Here, we present an algorithm for a general analysis of the polymorphism of the G-quadruplex structure from the data bank PDB using original parameters. 74 structures were grouped according to the following parameters: the number of DNA strands, the number of G-quartets, and the location and orientation of the connecting loops. Two quantitative parameters were used to describe the quadruplex structure: the twist angle between two adjacent quartets (analogous to that for the complementary pair in the duplex DNA) and the quartet planarity (an original parameter). The distribution patterns of these values are specific for each group of quadruplex structures and are dependent upon the type of connecting loops used (diagonal, lateral or propeller). The tetramolecular loopless parallel quadruplex was used as a comparison template. The lateral loops introduce the strongest distortion into the structure of quadruplexes: the values of the twist angles are the lowest and are not typical for the other quadruplex groups. The loops of the diagonal type introduce much weaker deformation into quadruplexes; the structures with propeller loops are characterized by the optimum geometry of G-quartets. Hence, the correlation between the twist angle and the tension in the structure of quadruplex DNA is revealed.
format Online
Article
Text
id pubmed-3347588
institution National Center for Biotechnology Information
language English
publishDate 2010
publisher A.I. Gordeyev
record_format MEDLINE/PubMed
spelling pubmed-33475882012-05-30 Classification of G-Quadruplex DNA on the Basis of the Quadruplex Twist Angle and Planarity of G-Quartets Reshetnikov, R.V. Kopylov, A.M. Golovin, A.V. Acta Naturae Research Article The present work is devoted to the analysis of the G-quadruplex DNA structure using the bioinformatics method. The interest towards quadruplex DNAs is determined by their involvement in the functioning of telomeres and onco-promoters as well as by the possibility to create on their basis aptamers and nanostructures. Here, we present an algorithm for a general analysis of the polymorphism of the G-quadruplex structure from the data bank PDB using original parameters. 74 structures were grouped according to the following parameters: the number of DNA strands, the number of G-quartets, and the location and orientation of the connecting loops. Two quantitative parameters were used to describe the quadruplex structure: the twist angle between two adjacent quartets (analogous to that for the complementary pair in the duplex DNA) and the quartet planarity (an original parameter). The distribution patterns of these values are specific for each group of quadruplex structures and are dependent upon the type of connecting loops used (diagonal, lateral or propeller). The tetramolecular loopless parallel quadruplex was used as a comparison template. The lateral loops introduce the strongest distortion into the structure of quadruplexes: the values of the twist angles are the lowest and are not typical for the other quadruplex groups. The loops of the diagonal type introduce much weaker deformation into quadruplexes; the structures with propeller loops are characterized by the optimum geometry of G-quartets. Hence, the correlation between the twist angle and the tension in the structure of quadruplex DNA is revealed. A.I. Gordeyev 2010 /pmc/articles/PMC3347588/ /pubmed/22649667 Text en Copyright © 2010 Park-media Ltd. http://creativecommons.org/licenses/by/2.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Reshetnikov, R.V.
Kopylov, A.M.
Golovin, A.V.
Classification of G-Quadruplex DNA on the Basis of the Quadruplex Twist Angle and Planarity of G-Quartets
title Classification of G-Quadruplex DNA on the Basis of the Quadruplex Twist Angle and Planarity of G-Quartets
title_full Classification of G-Quadruplex DNA on the Basis of the Quadruplex Twist Angle and Planarity of G-Quartets
title_fullStr Classification of G-Quadruplex DNA on the Basis of the Quadruplex Twist Angle and Planarity of G-Quartets
title_full_unstemmed Classification of G-Quadruplex DNA on the Basis of the Quadruplex Twist Angle and Planarity of G-Quartets
title_short Classification of G-Quadruplex DNA on the Basis of the Quadruplex Twist Angle and Planarity of G-Quartets
title_sort classification of g-quadruplex dna on the basis of the quadruplex twist angle and planarity of g-quartets
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3347588/
https://www.ncbi.nlm.nih.gov/pubmed/22649667
work_keys_str_mv AT reshetnikovrv classificationofgquadruplexdnaonthebasisofthequadruplextwistangleandplanarityofgquartets
AT kopylovam classificationofgquadruplexdnaonthebasisofthequadruplextwistangleandplanarityofgquartets
AT golovinav classificationofgquadruplexdnaonthebasisofthequadruplextwistangleandplanarityofgquartets