Prediction of Nucleosome Positioning in Genomes: Limits and Perspectives of Physical and Bioinformatic Approaches
Author:
Publisher
Informa UK Limited
Subject
Molecular Biology,General Medicine,Structural Biology
Link
http://www.tandfonline.com/doi/pdf/10.1080/10256018808623883
Reference67 articles.
1. Genome-Scale Identification of Nucleosome Positions in S. cerevisiae
2. Intrinsic histone-DNA interactions are not the major determinant of nucleosome positions in vivo
3. A high-resolution, nucleosome position map of C. elegans reveals a lack of universal sequence-dictated positioning
4. Distinct Modes of Regulation by Chromatin Encoded through Nucleosome Positioning Signals
5. The DNA-encoded nucleosome organization of a eukaryotic genome
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1. A deformation energy model reveals sequence-dependent property of nucleosome positioning;Chromosoma;2021-01-16
2. Deform-nu: A DNA Deformation Energy-Based Predictor for Nucleosome Positioning;Frontiers in Cell and Developmental Biology;2020-12-23
3. DNA physical properties outperform sequence compositional information in classifying nucleosome-enriched and -depleted regions;Genomics;2019-09
4. Physical properties of DNA may direct the binding of nucleoid-associated proteins along the E. coli genome;Mathematical Biosciences;2018-07
5. A deformation energy-based model for predicting nucleosome dyads and occupancy;Scientific Reports;2016-04-07
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