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Nature Cell Biology
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February 25, 2022
EZH2 noncanonically binds cMyc and p300 through a cryptic transactivation domain to mediate gene activation and promote oncogenesis
Jun Wang, Xufen Yu, Weida Gong, et al.
Molecular Cell
|
May 29, 2026
Molecular mechanisms of the MLL4 complex in H3K4 methylation and p53-dependent transcription activation
Jianfeng Sun, Zhiying Zhang, You Yu, et al.
Nucleic Acids Research
|
July 9, 2018
Histone H1 acetylation at lysine 85 regulates chromatin condensation and genome stability upon DNA damage
Yinglu Li, Zhiming Li, Liping Dong, et al.
Nature Communications
|
May 26, 2019
Selective binding of the PHD6 finger of MLL4 to histone H4K16ac links MLL4 and MOF
Yi Zhang, Younghoon Jang, Ji-Eun Lee, et al.
Frontiers in Cell and Developmental Biology
|
September 26, 2022
A direct comparison between AML1-ETO and ETO2-GLIS2 leukemia fusion proteins reveals context-dependent binding and regulation of target genes and opposite functions in cell differentiation
Yi-Fan Zhang, Xiao-Lin Wang, Chun-Hui Xu, et al.
The Journal of Clinical Investigation
|
February 16, 2016
MLL-AF9- and HOXA9-mediated acute myeloid leukemia stem cell self-renewal requires JMJD1C
Nan Zhu, Mo Chen, Rowena Eng, et al.
Biorxiv : the Preprint Server for Biology
|
February 24, 2023
Cooperative super-enhancer inactivation caused by heterozygous loss of CREBBP and KMT2D skews B cell fate decisions and yields T cell-depleted lymphomas
Jie Li, Christopher R Chin, Hsia-Yuan Ying, et al.
Leukemia
|
February 14, 2019
Destabilization of AETFC through C/EBPα-mediated repression of LYL1 contributes to t(8;21) leukemic cell differentiation
Meng-Meng Zhang, Na Liu, Yuan-Liang Zhang, et al.
Molecular Cell
|
February 14, 2012
Direct recruitment of polycomb repressive complex 1 to chromatin by core binding transcription factors
Ming Yu, Tali Mazor, Hui Huang, et al.
Science (New York, N.Y.)
|
July 19, 2011
The leukemogenicity of AML1-ETO is dependent on site-specific lysine acetylation
Lan Wang, Alexander Gural, Xiao-Jian Sun, et al.
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of 59
Search research articles
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Showing results (551-560 of 586) with videos related to
Sort By:
Page
of 59
Nature Cell Biology
|
February 25, 2022
EZH2 noncanonically binds cMyc and p300 through a cryptic transactivation domain to mediate gene activation and promote oncogenesis
Jun Wang, Xufen Yu, Weida Gong, et al.
Molecular Cell
|
May 29, 2026
Molecular mechanisms of the MLL4 complex in H3K4 methylation and p53-dependent transcription activation
Jianfeng Sun, Zhiying Zhang, You Yu, et al.
Nucleic Acids Research
|
July 9, 2018
Histone H1 acetylation at lysine 85 regulates chromatin condensation and genome stability upon DNA damage
Yinglu Li, Zhiming Li, Liping Dong, et al.
Nature Communications
|
May 26, 2019
Selective binding of the PHD6 finger of MLL4 to histone H4K16ac links MLL4 and MOF
Yi Zhang, Younghoon Jang, Ji-Eun Lee, et al.
Frontiers in Cell and Developmental Biology
|
September 26, 2022
A direct comparison between AML1-ETO and ETO2-GLIS2 leukemia fusion proteins reveals context-dependent binding and regulation of target genes and opposite functions in cell differentiation
Yi-Fan Zhang, Xiao-Lin Wang, Chun-Hui Xu, et al.
The Journal of Clinical Investigation
|
February 16, 2016
MLL-AF9- and HOXA9-mediated acute myeloid leukemia stem cell self-renewal requires JMJD1C
Nan Zhu, Mo Chen, Rowena Eng, et al.
Biorxiv : the Preprint Server for Biology
|
February 24, 2023
Cooperative super-enhancer inactivation caused by heterozygous loss of CREBBP and KMT2D skews B cell fate decisions and yields T cell-depleted lymphomas
Jie Li, Christopher R Chin, Hsia-Yuan Ying, et al.
Leukemia
|
February 14, 2019
Destabilization of AETFC through C/EBPα-mediated repression of LYL1 contributes to t(8;21) leukemic cell differentiation
Meng-Meng Zhang, Na Liu, Yuan-Liang Zhang, et al.
Molecular Cell
|
February 14, 2012
Direct recruitment of polycomb repressive complex 1 to chromatin by core binding transcription factors
Ming Yu, Tali Mazor, Hui Huang, et al.
Science (New York, N.Y.)
|
July 19, 2011
The leukemogenicity of AML1-ETO is dependent on site-specific lysine acetylation
Lan Wang, Alexander Gural, Xiao-Jian Sun, et al.
Page
of 59