Local Volume Concentration, Packing Domains and Scaling Properties of Chromatin

Author:

Cangnano Marcelo1,Kröger Martin2,Almassalha Luay Matthew3,Agrawal Vasundhara1,Li Wing Shun4,Pujadas-Liwag Emily M1,Nap Rikkert J1,Backman Vadim1,Szleifer Igal15

Affiliation:

1. Department of Biomedical Engineering, Northwestern University

2. Magnetism and Interface Physics & Computational Polymer Physics, Department of Materials, ETH Zurich

3. Department of Gastroenterology and Hepatology, Northwestern Memorial Hospital

4. Applied Physics Program, Northwestern University

5. Department of Chemistry, Northwestern University

Abstract

We propose the Self Returning Excluded Volume (SR-EV) model for the structure of chromatin based on stochastic rules and physical interactions. The SR-EV rules of return generate conformationally-defined domains observed by single cell imaging techniques. From nucleosome to chromosome scales, the model captures the overall chromatin organization as a corrugated system, with dense and dilute regions alternating in a manner that resembles the mixing of two disordered bi-continuous phases. This particular organizational topology is a consequence of the multiplicity of interactions and processes occurring in the nuclei, and mimicked by the proposed return rules. Single configuration properties and ensemble averages show a robust agreement between theoretical and experimental results including chromatin volume concentration, contact probability, packing domain identification and size characterization, and packing scaling behavior. Model and experimental results suggest that there is an inherent chromatin organization regardless of the cell character and resistant to an external forcing such as Rad21 degradation.

Publisher

eLife Sciences Publications, Ltd

Reference79 articles.

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