Title of article :
A Novel Roll-and-Slide Mechanism of DNA Folding in Chromatin: Implications for Nucleosome Positioning
Author/Authors :
Michael Y. Tolstorukov، نويسنده , , Andrew V. Colasanti، نويسنده , , David M. McCandlish، نويسنده , , Wilma K. Olson، نويسنده , , Victor B. Zhurkin، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2007
Pages :
14
From page :
725
To page :
738
Abstract :
How eukaryotic genomes encode the folding of DNA into nucleosomes and how this intrinsic organization of chromatin guides biological function are questions of wide interest. The physical basis of nucleosome positioning lies in the sequence-dependent propensity of DNA to adopt the tightly bent configuration imposed by the binding of the histone proteins. Traditionally, only DNA bending and twisting deformations are considered, while the effects of the lateral displacements of adjacent base pairs are neglected. We demonstrate, however, that these displacements have a much more important structural role than ever imagined. Specifically, the lateral Slide deformations observed at sites of local anisotropic bending of DNA define its superhelical trajectory in chromatin. Furthermore, the computed cost of deforming DNA on the nucleosome is sequence-specific: in optimally positioned sequences the most easily deformed base-pair steps (CA:TG and TA) occur at sites of large positive Slide and negative Roll (where the DNA bends into the minor groove). These conclusions rest upon a treatment of DNA that goes beyond the conventional ribbon model, incorporating all essential degrees of freedom of “real” duplexes in the estimation of DNA deformation energies. Indeed, only after lateral Slide displacements are considered are we able to account for the sequence-specific folding of DNA found in nucleosome structures. The close correspondence between the predicted and observed nucleosome locations demonstrates the potential advantage of our “structural” approach in the computer mapping of nucleosome positioning.
Keywords :
knowledge-based potentials , base-pair shearing , nucleosome positioning , superhelical pitch , DNA deformation
Journal title :
Journal of Molecular Biology
Serial Year :
2007
Journal title :
Journal of Molecular Biology
Record number :
1249619
Link To Document :
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