Spatially confined polymer chains: implications of chromatin fibre flexibility and peripheral anchoring on telomere–telomere interaction

We simulate the extension of spatially confined chromatin fibres modelled as polymer chains and examine the effect of the flexibility of the fibre and its degree of freedom. The developed formalism was used to analyse experimental data of telomere-telomere distances in living yeast cells in the abse...

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Published inJournal of physics. Condensed matter Vol. 18; no. 14; pp. S245 - S252
Main Authors Gehlen, L R, Rosa, A, Klenin, K, Langowski, J, Gasser, S M, Bystricky, K
Format Journal Article Conference Proceeding
LanguageEnglish
Published Bristol IOP Publishing 12.04.2006
Institute of Physics
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Summary:We simulate the extension of spatially confined chromatin fibres modelled as polymer chains and examine the effect of the flexibility of the fibre and its degree of freedom. The developed formalism was used to analyse experimental data of telomere-telomere distances in living yeast cells in the absence of confining factors as identified by the proteins Sir4 and yKu70. Our analysis indicates that intrinsic properties of the chromatin fibre, in particular its elastic properties and flexibility, can influence the juxtaposition of the telomeric ends of chromosomes. However, measurements in intact yeast cells showed that the telomeres of chromosomes 3 and 6 come even closer together than the parameters of constraint imposed on the simulations would predict. This juxtaposition was specific to telomeres on one contiguous chromosome and overrode a tendency for separation that is imposed by anchoring.
Bibliography:ObjectType-Article-2
SourceType-Scholarly Journals-1
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ISSN:0953-8984
1361-648X
DOI:10.1088/0953-8984/18/14/S09