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Bing Ren

Showing results (411-420 of 577) with videos related to

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Cell Stem Cell|April 7, 2015
Epigenetic priming of enhancers predicts developmental competence of hESC-derived endodermal lineage intermediatesAllen Wang, Feng Yue, Yan Li, et al.
Nature|November 24, 2017
Corrigendum: The 4D nucleome projectJob Dekker, Andrew S Belmont, Mitchell Guttman, et al.
Nature Communications|January 5, 2021
ZNF143 mediates CTCF-bound promoter-enhancer loops required for murine hematopoietic stem and progenitor cell functionQiling Zhou, Miao Yu, Roberto Tirado-Magallanes, et al.
The Journal of Cell Biology|February 26, 2017
Human centromeric CENP-A chromatin is a homotypic, octameric nucleosome at all cell cycle pointsYael Nechemia-Arbely, Daniele Fachinetti, Karen H Miga, et al.
Nature|September 15, 2017
The 4D nucleome projectJob Dekker, Andrew S Belmont, Mitchell Guttman, et al.
Nature Neuroscience|February 14, 2018
Single-nucleus analysis of accessible chromatin in developing mouse forebrain reveals cell-type-specific transcriptional regulationSebastian Preissl, Rongxin Fang, Hui Huang, et al.
Nature Neuroscience|March 3, 2018
Author Correction: Single-nucleus analysis of accessible chromatin in developing mouse forebrain reveals cell-type-specific transcriptional regulationSebastian Preissl, Rongxin Fang, Hui Huang, et al.
Nature Structural & Molecular Biology|January 5, 2021
Promoter-proximal CTCF binding promotes distal enhancer-dependent gene activationNaoki Kubo, Haruhiko Ishii, Xiong Xiong, et al.
Nature Communications|August 12, 2023
SnapFISH: a computational pipeline to identify chromatin loops from multiplexed DNA FISH dataLindsay Lee, Hongyu Yu, Bojing Blair Jia, et al.
Nature Communications|February 28, 2013
Tet-mediated covalent labelling of 5-methylcytosine for its genome-wide detection and sequencingLiang Zhang, Keith E Szulwach, Gary C Hon, et al.
Pageof 58

Showing results (411-420 of 577) with videos related to

Sort By:
Pageof 58
Cell Stem Cell|April 7, 2015
Epigenetic priming of enhancers predicts developmental competence of hESC-derived endodermal lineage intermediatesAllen Wang, Feng Yue, Yan Li, et al.
Nature|November 24, 2017
Corrigendum: The 4D nucleome projectJob Dekker, Andrew S Belmont, Mitchell Guttman, et al.
Nature Communications|January 5, 2021
ZNF143 mediates CTCF-bound promoter-enhancer loops required for murine hematopoietic stem and progenitor cell functionQiling Zhou, Miao Yu, Roberto Tirado-Magallanes, et al.
The Journal of Cell Biology|February 26, 2017
Human centromeric CENP-A chromatin is a homotypic, octameric nucleosome at all cell cycle pointsYael Nechemia-Arbely, Daniele Fachinetti, Karen H Miga, et al.
Nature|September 15, 2017
The 4D nucleome projectJob Dekker, Andrew S Belmont, Mitchell Guttman, et al.
Nature Neuroscience|February 14, 2018
Single-nucleus analysis of accessible chromatin in developing mouse forebrain reveals cell-type-specific transcriptional regulationSebastian Preissl, Rongxin Fang, Hui Huang, et al.
Nature Neuroscience|March 3, 2018
Author Correction: Single-nucleus analysis of accessible chromatin in developing mouse forebrain reveals cell-type-specific transcriptional regulationSebastian Preissl, Rongxin Fang, Hui Huang, et al.
Nature Structural & Molecular Biology|January 5, 2021
Promoter-proximal CTCF binding promotes distal enhancer-dependent gene activationNaoki Kubo, Haruhiko Ishii, Xiong Xiong, et al.
Nature Communications|August 12, 2023
SnapFISH: a computational pipeline to identify chromatin loops from multiplexed DNA FISH dataLindsay Lee, Hongyu Yu, Bojing Blair Jia, et al.
Nature Communications|February 28, 2013
Tet-mediated covalent labelling of 5-methylcytosine for its genome-wide detection and sequencingLiang Zhang, Keith E Szulwach, Gary C Hon, et al.
Pageof 58