Cargando…

An Advanced Coarse-Grained Nucleosome Core Particle Model for Computer Simulations of Nucleosome-Nucleosome Interactions under Varying Ionic Conditions

In the eukaryotic cell nucleus, DNA exists as chromatin, a compact but dynamic complex with histone proteins. The first level of DNA organization is the linear array of nucleosome core particles (NCPs). The NCP is a well-defined complex of 147 bp DNA with an octamer of histones. Interactions between...

Descripción completa

Detalles Bibliográficos
Autores principales: Fan, Yanping, Korolev, Nikolay, Lyubartsev, Alexander P., Nordenskiöld, Lars
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3572162/
https://www.ncbi.nlm.nih.gov/pubmed/23418426
http://dx.doi.org/10.1371/journal.pone.0054228
_version_ 1782259290286850048
author Fan, Yanping
Korolev, Nikolay
Lyubartsev, Alexander P.
Nordenskiöld, Lars
author_facet Fan, Yanping
Korolev, Nikolay
Lyubartsev, Alexander P.
Nordenskiöld, Lars
author_sort Fan, Yanping
collection PubMed
description In the eukaryotic cell nucleus, DNA exists as chromatin, a compact but dynamic complex with histone proteins. The first level of DNA organization is the linear array of nucleosome core particles (NCPs). The NCP is a well-defined complex of 147 bp DNA with an octamer of histones. Interactions between NCPs are of paramount importance for higher levels of chromatin compaction. The polyelectrolyte nature of the NCP implies that nucleosome-nucleosome interactions must exhibit a great influence from both the ionic environment as well as the positively charged and highly flexible N-terminal histone tails, protruding out from the NCP. The large size of the system precludes a modelling analysis of chromatin at an all-atom level and calls for coarse-grained approximations. Here, a model of the NCP that include the globular histone core and the flexible histone tails described by one particle per each amino acid and taking into account their net charge is proposed. DNA wrapped around the histone core was approximated at the level of two base pairs represented by one bead (bases and sugar) plus four beads of charged phosphate groups. Computer simulations, using a Langevin thermostat, in a dielectric continuum with explicit monovalent (K(+)), divalent (Mg(2+)) or trivalent (Co(NH(3))(6) (3+)) cations were performed for systems with one or ten NCPs. Increase of the counterion charge results in a switch from repulsive NCP-NCP interaction in the presence of K(+), to partial aggregation with Mg(2+) and to strong mutual attraction of all 10 NCPs in the presence of CoHex(3+). The new model reproduced experimental results and the structure of the NCP-NCP contacts is in agreement with available data. Cation screening, ion-ion correlations and tail bridging contribute to the NCP-NCP attraction and the new NCP model accounts for these interactions.
format Online
Article
Text
id pubmed-3572162
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-35721622013-02-15 An Advanced Coarse-Grained Nucleosome Core Particle Model for Computer Simulations of Nucleosome-Nucleosome Interactions under Varying Ionic Conditions Fan, Yanping Korolev, Nikolay Lyubartsev, Alexander P. Nordenskiöld, Lars PLoS One Research Article In the eukaryotic cell nucleus, DNA exists as chromatin, a compact but dynamic complex with histone proteins. The first level of DNA organization is the linear array of nucleosome core particles (NCPs). The NCP is a well-defined complex of 147 bp DNA with an octamer of histones. Interactions between NCPs are of paramount importance for higher levels of chromatin compaction. The polyelectrolyte nature of the NCP implies that nucleosome-nucleosome interactions must exhibit a great influence from both the ionic environment as well as the positively charged and highly flexible N-terminal histone tails, protruding out from the NCP. The large size of the system precludes a modelling analysis of chromatin at an all-atom level and calls for coarse-grained approximations. Here, a model of the NCP that include the globular histone core and the flexible histone tails described by one particle per each amino acid and taking into account their net charge is proposed. DNA wrapped around the histone core was approximated at the level of two base pairs represented by one bead (bases and sugar) plus four beads of charged phosphate groups. Computer simulations, using a Langevin thermostat, in a dielectric continuum with explicit monovalent (K(+)), divalent (Mg(2+)) or trivalent (Co(NH(3))(6) (3+)) cations were performed for systems with one or ten NCPs. Increase of the counterion charge results in a switch from repulsive NCP-NCP interaction in the presence of K(+), to partial aggregation with Mg(2+) and to strong mutual attraction of all 10 NCPs in the presence of CoHex(3+). The new model reproduced experimental results and the structure of the NCP-NCP contacts is in agreement with available data. Cation screening, ion-ion correlations and tail bridging contribute to the NCP-NCP attraction and the new NCP model accounts for these interactions. Public Library of Science 2013-02-13 /pmc/articles/PMC3572162/ /pubmed/23418426 http://dx.doi.org/10.1371/journal.pone.0054228 Text en © 2013 Fan et al http://creativecommons.org/licenses/by/4.0/ 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 author and source are properly credited.
spellingShingle Research Article
Fan, Yanping
Korolev, Nikolay
Lyubartsev, Alexander P.
Nordenskiöld, Lars
An Advanced Coarse-Grained Nucleosome Core Particle Model for Computer Simulations of Nucleosome-Nucleosome Interactions under Varying Ionic Conditions
title An Advanced Coarse-Grained Nucleosome Core Particle Model for Computer Simulations of Nucleosome-Nucleosome Interactions under Varying Ionic Conditions
title_full An Advanced Coarse-Grained Nucleosome Core Particle Model for Computer Simulations of Nucleosome-Nucleosome Interactions under Varying Ionic Conditions
title_fullStr An Advanced Coarse-Grained Nucleosome Core Particle Model for Computer Simulations of Nucleosome-Nucleosome Interactions under Varying Ionic Conditions
title_full_unstemmed An Advanced Coarse-Grained Nucleosome Core Particle Model for Computer Simulations of Nucleosome-Nucleosome Interactions under Varying Ionic Conditions
title_short An Advanced Coarse-Grained Nucleosome Core Particle Model for Computer Simulations of Nucleosome-Nucleosome Interactions under Varying Ionic Conditions
title_sort advanced coarse-grained nucleosome core particle model for computer simulations of nucleosome-nucleosome interactions under varying ionic conditions
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3572162/
https://www.ncbi.nlm.nih.gov/pubmed/23418426
http://dx.doi.org/10.1371/journal.pone.0054228
work_keys_str_mv AT fanyanping anadvancedcoarsegrainednucleosomecoreparticlemodelforcomputersimulationsofnucleosomenucleosomeinteractionsundervaryingionicconditions
AT korolevnikolay anadvancedcoarsegrainednucleosomecoreparticlemodelforcomputersimulationsofnucleosomenucleosomeinteractionsundervaryingionicconditions
AT lyubartsevalexanderp anadvancedcoarsegrainednucleosomecoreparticlemodelforcomputersimulationsofnucleosomenucleosomeinteractionsundervaryingionicconditions
AT nordenskioldlars anadvancedcoarsegrainednucleosomecoreparticlemodelforcomputersimulationsofnucleosomenucleosomeinteractionsundervaryingionicconditions
AT fanyanping advancedcoarsegrainednucleosomecoreparticlemodelforcomputersimulationsofnucleosomenucleosomeinteractionsundervaryingionicconditions
AT korolevnikolay advancedcoarsegrainednucleosomecoreparticlemodelforcomputersimulationsofnucleosomenucleosomeinteractionsundervaryingionicconditions
AT lyubartsevalexanderp advancedcoarsegrainednucleosomecoreparticlemodelforcomputersimulationsofnucleosomenucleosomeinteractionsundervaryingionicconditions
AT nordenskioldlars advancedcoarsegrainednucleosomecoreparticlemodelforcomputersimulationsofnucleosomenucleosomeinteractionsundervaryingionicconditions