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Hai-Qiang Dai

Showing results (1-10 of 15) with videos related to

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Acta Biochimica Et Biophysica Sinica|August 4, 2023
Mesoscale sequence feature modulates AID activity in antibody diversificationJiayang Li, Hai-Qiang Dai
Molecular Cell|December 5, 2025
Hi-Coatis: Capturing the 3D interplay between transcription and chromatin architectureMeichen Wang, Hai-Qiang Dai
Cell|May 29, 2018
CTCF-Binding Elements Mediate Accessibility of RAG Substrates During Chromatin ScanningSuvi Jain, Zhaoqing Ba, Yu Zhang, et al.
Nature Reviews. Immunology|February 16, 2022
The role of chromatin loop extrusion in antibody diversificationYu Zhang, Xuefei Zhang, Hai-Qiang Dai, et al.
Nature Communications|August 11, 2022
TET enzymes regulate skeletal development through increasing chromatin accessibility of RUNX2 target genesLijun Wang, Xiuling You, Dengfeng Ruan, et al.
Advanced Science (Weinheim, Baden-Wurttemberg, Germany)|October 27, 2025
HTGTS-TCR-Seq for Profiling of Mouse and Human T-Cell Receptor α and β Gene Rearrangements and DiversityRui Luo, Yawei Song, Meichen Wang, et al.
Proceedings of the National Academy of Sciences of the United States of America|June 20, 2023
Contribution of the IGCR1 regulatory element and the 3'<i>Igh</i> CTCF-binding elements to regulation of <i>Igh</i> V(D)J recombinationZhuoyi Liang, Lijuan Zhao, Adam Yongxin Ye, et al.
Biorxiv : the Preprint Server for Biology|May 10, 2023
Contribution of the IGCR1 regulatory element and the 3 <i>'Igh</i> CBEs to Regulation of <i>Igh</i> V(D)J RecombinationZhuoyi Liang, Lijuan Zhao, Adam Yongxin Ye, et al.
Nature Protocols|August 12, 2020
Direct analysis of brain phenotypes via neural blastocyst complementationHai-Qiang Dai, Zhuoyi Liang, Amelia N Chang, et al.
Nature|October 12, 2018
Neural blastocyst complementation enables mouse forebrain organogenesisAmelia N Chang, Zhuoyi Liang, Hai-Qiang Dai, et al.
Pageof 2

Showing results (1-10 of 15) with videos related to

Sort By:
Pageof 2
Acta Biochimica Et Biophysica Sinica|August 4, 2023
Mesoscale sequence feature modulates AID activity in antibody diversificationJiayang Li, Hai-Qiang Dai
Molecular Cell|December 5, 2025
Hi-Coatis: Capturing the 3D interplay between transcription and chromatin architectureMeichen Wang, Hai-Qiang Dai
Cell|May 29, 2018
CTCF-Binding Elements Mediate Accessibility of RAG Substrates During Chromatin ScanningSuvi Jain, Zhaoqing Ba, Yu Zhang, et al.
Nature Reviews. Immunology|February 16, 2022
The role of chromatin loop extrusion in antibody diversificationYu Zhang, Xuefei Zhang, Hai-Qiang Dai, et al.
Nature Communications|August 11, 2022
TET enzymes regulate skeletal development through increasing chromatin accessibility of RUNX2 target genesLijun Wang, Xiuling You, Dengfeng Ruan, et al.
Advanced Science (Weinheim, Baden-Wurttemberg, Germany)|October 27, 2025
HTGTS-TCR-Seq for Profiling of Mouse and Human T-Cell Receptor α and β Gene Rearrangements and DiversityRui Luo, Yawei Song, Meichen Wang, et al.
Proceedings of the National Academy of Sciences of the United States of America|June 20, 2023
Contribution of the IGCR1 regulatory element and the 3'<i>Igh</i> CTCF-binding elements to regulation of <i>Igh</i> V(D)J recombinationZhuoyi Liang, Lijuan Zhao, Adam Yongxin Ye, et al.
Biorxiv : the Preprint Server for Biology|May 10, 2023
Contribution of the IGCR1 regulatory element and the 3 <i>'Igh</i> CBEs to Regulation of <i>Igh</i> V(D)J RecombinationZhuoyi Liang, Lijuan Zhao, Adam Yongxin Ye, et al.
Nature Protocols|August 12, 2020
Direct analysis of brain phenotypes via neural blastocyst complementationHai-Qiang Dai, Zhuoyi Liang, Amelia N Chang, et al.
Nature|October 12, 2018
Neural blastocyst complementation enables mouse forebrain organogenesisAmelia N Chang, Zhuoyi Liang, Hai-Qiang Dai, et al.
Pageof 2