DNA sequence encodes the position of DNA supercoils

Author:

Kim Sung Hyun1ORCID,Ganji Mahipal1ORCID,Kim Eugene1,van der Torre Jaco1,Abbondanzieri Elio1,Dekker Cees1ORCID

Affiliation:

1. Department of Bionanoscience, Kavli Institute of Nanoscience, Delft University of Technology, Delft, The Netherlands

Abstract

The three-dimensional organization of DNA is increasingly understood to play a decisive role in vital cellular processes. Many studies focus on the role of DNA-packaging proteins, crowding, and confinement in arranging chromatin, but structural information might also be directly encoded in bare DNA itself. Here, we visualize plectonemes (extended intertwined DNA structures formed upon supercoiling) on individual DNA molecules. Remarkably, our experiments show that the DNA sequence directly encodes the structure of supercoiled DNA by pinning plectonemes at specific sequences. We develop a physical model that predicts that sequence-dependent intrinsic curvature is the key determinant of pinning strength and demonstrate this simple model provides very good agreement with the data. Analysis of several prokaryotic genomes indicates that plectonemes localize directly upstream of promoters, which we experimentally confirm for selected promotor sequences. Our findings reveal a hidden code in the genome that helps to spatially organize the chromosomal DNA.

Funder

H2020 European Research Council

The Netherlands Organization for Scientific Research

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

Reference60 articles.

1. A physical model for plectoneme occurrence prediction;Abbondanzieri,2018

2. DNA sequence-directed organization of chromatin: structure-based computational analysis of nucleosome-binding sequences;Balasubramanian;Biophysical Journal,2009

3. Effects of supercoiling on enhancer-promoter contacts;Benedetti;Nucleic Acids Research,2014

4. Theoretical analysis of heteropolymeric transitions in superhelical DNA molecules of specified sequence;Benham;The Journal of Chemical Physics,1990

5. Energetics of the strand separation transition in superhelical DNA;Benham;Journal of Molecular Biology,1992

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