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Histone modifications form a cell-type-specific chromosomal bar code that modulates and maintains patterns of gene expression through the cell cycle
View ORCID ProfileJohn A. Halsall, View ORCID ProfileSimon Andrews, View ORCID ProfileFelix Krueger, Charlotte E. Rutledge, View ORCID ProfileGabriella Ficz, View ORCID ProfileWolf Reik, Bryan M. Turner
doi: https://doi.org/10.1101/2020.10.16.341446
John A. Halsall
1Chromatin and Gene Regulation Group, Institute of Cancer and Genomic Sciences, University of Birmingham, UK
Simon Andrews
2Bioinformatics, The Babraham Institute, Cambridge, UK
Felix Krueger
2Bioinformatics, The Babraham Institute, Cambridge, UK
Charlotte E. Rutledge
1Chromatin and Gene Regulation Group, Institute of Cancer and Genomic Sciences, University of Birmingham, UK
Gabriella Ficz
3Epigenetics Programme, The Babraham Institute, Cambridge, UK
Wolf Reik
3Epigenetics Programme, The Babraham Institute, Cambridge, UK
Bryan M. Turner
1Chromatin and Gene Regulation Group, Institute of Cancer and Genomic Sciences, University of Birmingham, UK
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Posted October 16, 2020.
Histone modifications form a cell-type-specific chromosomal bar code that modulates and maintains patterns of gene expression through the cell cycle
John A. Halsall, Simon Andrews, Felix Krueger, Charlotte E. Rutledge, Gabriella Ficz, Wolf Reik, Bryan M. Turner
bioRxiv 2020.10.16.341446; doi: https://doi.org/10.1101/2020.10.16.341446
Histone modifications form a cell-type-specific chromosomal bar code that modulates and maintains patterns of gene expression through the cell cycle
John A. Halsall, Simon Andrews, Felix Krueger, Charlotte E. Rutledge, Gabriella Ficz, Wolf Reik, Bryan M. Turner
bioRxiv 2020.10.16.341446; doi: https://doi.org/10.1101/2020.10.16.341446
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