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Complexity of chromatin folding is captured by the strings and binders switch model.


ABSTRACT: Chromatin has a complex spatial organization in the cell nucleus that serves vital functional purposes. A variety of chromatin folding conformations has been detected by single-cell imaging and chromosome conformation capture-based approaches. However, a unified quantitative framework describing spatial chromatin organization is still lacking. Here, we explore the "strings and binders switch" model to explain the origin and variety of chromatin behaviors that coexist and dynamically change within living cells. This simple polymer model recapitulates the scaling properties of chromatin folding reported experimentally in different cellular systems, the fractal state of chromatin, the processes of domain formation, and looping out. Additionally, the strings and binders switch model reproduces the recently proposed "fractal-globule" model, but only as one of many possible transient conformations.

SUBMITTER: Barbieri M 

PROVIDER: S-EPMC3479593 | biostudies-literature | 2012 Oct

REPOSITORIES: biostudies-literature

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Complexity of chromatin folding is captured by the strings and binders switch model.

Barbieri Mariano M   Chotalia Mita M   Fraser James J   Lavitas Liron-Mark LM   Dostie Josée J   Pombo Ana A   Nicodemi Mario M  

Proceedings of the National Academy of Sciences of the United States of America 20120917 40


Chromatin has a complex spatial organization in the cell nucleus that serves vital functional purposes. A variety of chromatin folding conformations has been detected by single-cell imaging and chromosome conformation capture-based approaches. However, a unified quantitative framework describing spatial chromatin organization is still lacking. Here, we explore the "strings and binders switch" model to explain the origin and variety of chromatin behaviors that coexist and dynamically change withi  ...[more]

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