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Michael Bulger

Showing results (11-20 of 32) with videos related to

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Blood|September 29, 2005
Deletion of the core region of 5' HS2 of the mouse beta-globin locus control region reveals a distinct effect in comparison with human beta-globin transgenesXiao Hu, Michael Bulger, M A Bender, et al.
Blood|April 29, 2006
Flanking HS-62.5 and 3' HS1, and regions upstream of the LCR, are not required for beta-globin transcriptionM A Bender, Rachel Byron, Tobias Ragoczy, et al.
Journal of Fungi (Basel, Switzerland)|February 25, 2025
Echinocandin Adaptation in <i>Candida albicans</i> Is Accompanied by Altered Chromatin Accessibility at Gene Promoters and by Cell Wall RemodelingSudisht K Sah, Anshuman Yadav, Tyler Stahl, et al.
Nature Communications|September 12, 2020
Hyperacetylated chromatin domains mark cell type-specific genes and suggest distinct modes of enhancer functionSierra Fox, Jacquelyn A Myers, Christina Davidson, et al.
Epigenetics & Chromatin|July 27, 2025
Histone H4 lysine 20 methylation marks genes dynamically regulated during erythroid maturationKristin Murphy, Michael Getman, Xiurui Lv, et al.
Epigenetics & Chromatin|July 31, 2021
Histone H2A.X phosphorylation and Caspase-Initiated Chromatin Condensation in late-stage erythropoiesisNazish N Jeffery, Christina Davidson, Scott A Peslak, et al.
Plos One|May 13, 2014
The chromatin "landscape" of a murine adult β-globin gene is unaffected by deletion of either the gene promoter or a downstream enhancerBrenda Cadiz-Rivera, George Fromm, Christina de Vries, et al.
Molecular and Cellular Biology|July 16, 2003
A complex chromatin landscape revealed by patterns of nuclease sensitivity and histone modification within the mouse beta-globin locusMichael Bulger, Dirk Schübeler, M A Bender, et al.
Epigenetics & Chromatin|October 25, 2017
NuA4 histone acetyltransferase activity is required for H4 acetylation on a dosage-compensated monosomic chromosome that confers resistance to fungal toxinsHironao Wakabayashi, Christopher Tucker, Gabor Bethlendy, et al.
Epigenetics & Chromatin|November 9, 2017
Correction to: NuA4 histone acetyltransferase activity is required for H4 acetylation on a dosage-compensated monosomic chromosome that confers resistance to fungal toxinsHironao Wakabayashi, Christopher Tucker, Gabor Bethlendy, et al.
Pageof 4

Showing results (11-20 of 32) with videos related to

Sort By:
Pageof 4
Blood|September 29, 2005
Deletion of the core region of 5' HS2 of the mouse beta-globin locus control region reveals a distinct effect in comparison with human beta-globin transgenesXiao Hu, Michael Bulger, M A Bender, et al.
Blood|April 29, 2006
Flanking HS-62.5 and 3' HS1, and regions upstream of the LCR, are not required for beta-globin transcriptionM A Bender, Rachel Byron, Tobias Ragoczy, et al.
Journal of Fungi (Basel, Switzerland)|February 25, 2025
Echinocandin Adaptation in <i>Candida albicans</i> Is Accompanied by Altered Chromatin Accessibility at Gene Promoters and by Cell Wall RemodelingSudisht K Sah, Anshuman Yadav, Tyler Stahl, et al.
Nature Communications|September 12, 2020
Hyperacetylated chromatin domains mark cell type-specific genes and suggest distinct modes of enhancer functionSierra Fox, Jacquelyn A Myers, Christina Davidson, et al.
Epigenetics & Chromatin|July 27, 2025
Histone H4 lysine 20 methylation marks genes dynamically regulated during erythroid maturationKristin Murphy, Michael Getman, Xiurui Lv, et al.
Epigenetics & Chromatin|July 31, 2021
Histone H2A.X phosphorylation and Caspase-Initiated Chromatin Condensation in late-stage erythropoiesisNazish N Jeffery, Christina Davidson, Scott A Peslak, et al.
Plos One|May 13, 2014
The chromatin "landscape" of a murine adult β-globin gene is unaffected by deletion of either the gene promoter or a downstream enhancerBrenda Cadiz-Rivera, George Fromm, Christina de Vries, et al.
Molecular and Cellular Biology|July 16, 2003
A complex chromatin landscape revealed by patterns of nuclease sensitivity and histone modification within the mouse beta-globin locusMichael Bulger, Dirk Schübeler, M A Bender, et al.
Epigenetics & Chromatin|October 25, 2017
NuA4 histone acetyltransferase activity is required for H4 acetylation on a dosage-compensated monosomic chromosome that confers resistance to fungal toxinsHironao Wakabayashi, Christopher Tucker, Gabor Bethlendy, et al.
Epigenetics & Chromatin|November 9, 2017
Correction to: NuA4 histone acetyltransferase activity is required for H4 acetylation on a dosage-compensated monosomic chromosome that confers resistance to fungal toxinsHironao Wakabayashi, Christopher Tucker, Gabor Bethlendy, et al.
Pageof 4