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PMID: 24380599 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Review

How chromatin looping and nuclear envelope attachment affect genome organization in eukaryotic cell nuclei.

International review of cell and molecular biology ·Vol. 307 ·2014-00-00 ·Pages 351-81

Jerabek H, Heermann DW

Abstract

To understand how interphase chromatin is organized in eukaryotic cell nuclei, it is essential to understand what kind of interactions influence the nuclear architecture and to what extent. Using a mesoscale model that incorporates chromatin-chromatin interactions as well as binding of chromatin to the nuclear envelope, we can show that chromatin loops and envelope bonds are major players in genome organization because they largely affect the entropy of the chromatin fibres. The model allows us to consistently reproduce multiple characteristic chromatin parameters in agreement with experimental data. We focus on the question of how an inversion of the nuclear architecture, in the course of which the highly active euchromatin changes its preferential position from the nuclear center to the periphery, can be achieved. We find that the transition between the common and inverted organization is driven by the strength of the envelope interaction and the nuclear chromatin density.

Keywords
Cell nucleus Chromatin Chromatin looping Entropy Monte-Carlo simulations Nuclear envelope Polymer models
MeSH Terms
Animals Euchromatin/metabolism Genome, Human/physiology Humans Models, Biological Nuclear Envelope/metabolism
Chemicals
Euchromatin
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Jerabek Hansjoerg
Institute for Theoretical Physics, Heidelberg, Germany; Interdisciplinary Center for Scientific Computing (IWR), Heidelberg, Germany.
Heermann Dieter W
Institute for Theoretical Physics, Heidelberg, Germany; Interdisciplinary Center for Scientific Computing (IWR), Heidelberg, Germany; The Jackson Laboratory, Bar Harbor, Maine, USA; Shanghai Center for Bioinformation Technology (SCBIT), Shanghai, PR China. Electronic address: heermann@tphys.uni-heidelberg.de.
Article Info
Journal
International review of cell and molecular biology
Abbr.
Int Rev Cell Mol Biol
ISSN
1937-6448
Published
2014-00-00
Pages
351-81
Language
English
Region
Netherlands
NLM ID
101475846
Subset
IM
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