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Zhengyu Liang
Zhengyu Liang
ucsd.edu의 이메일 확인됨
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Reversing a model of Parkinson’s disease with in situ converted nigral neurons
H Qian, X Kang, J Hu, D Zhang, Z Liang, F Meng, X Zhang, Y Xue, ...
Nature 582 (7813), 550-556, 2020
3642020
Pervasive chromatin-RNA binding protein interactions enable RNA-based regulation of transcription
R Xiao, JY Chen, Z Liang, D Luo, G Chen, ZJ Lu, Y Chen, B Zhou, H Li, ...
Cell 178 (1), 107-121. e18, 2019
2502019
BL-Hi-C is an efficient and sensitive approach for capturing structural and regulatory chromatin interactions
Z Liang, G Li, Z Wang, MN Djekidel, Y Li, MP Qian, MQ Zhang, Y Chen
Nature communications 8 (1), 1622, 2017
712017
Initiation of parental genome reprogramming in fertilized oocyte by splicing kinase SRPK1-catalyzed protamine phosphorylation
LT Gou, DH Lim, W Ma, BE Aubol, Y Hao, X Wang, J Zhao, Z Liang, ...
Cell 180 (6), 1212-1227. e14, 2020
632020
PRDM16 is a compact myocardium-enriched transcription factor required to maintain compact myocardial cardiomyocyte identity in left ventricle
T Wu, Z Liang, Z Zhang, C Liu, L Zhang, Y Gu, KL Peterson, SM Evans, ...
Circulation 145 (8), 586-602, 2022
522022
Alterations of specific chromatin conformation affect ATRA-induced leukemia cell differentiation
Y Li, Y He, Z Liang, Y Wang, F Chen, MN Djekidel, G Li, X Zhang, S Xiang, ...
Cell death & disease 9 (2), 200, 2018
332018
Transcription elongation machinery is a druggable dependency and potentiates immunotherapy in glioblastoma stem cells
Z Qiu, L Zhao, JZ Shen, Z Liang, Q Wu, K Yang, L Min, RC Gimple, ...
Cancer discovery 12 (2), 502-521, 2022
312022
Quantifying the phase separation property of chromatin-associated proteins under physiological conditions using an anti-1, 6-hexanediol index
M Shi, K You, T Chen, C Hou, Z Liang, M Liu, J Wang, T Wei, J Qin, ...
Genome biology 22, 1-26, 2021
272021
3CPET: finding co-factor complexes from ChIA-PET data using a hierarchical Dirichlet process
MN Djekidel, Z Liang, Q Wang, Z Hu, G Li, Y Chen, MQ Zhang
Genome biology 16, 1-16, 2015
242015
CTCF functions as an insulator for somatic genes and a chromatin remodeler for pluripotency genes during reprogramming
Y Song, Z Liang, J Zhang, G Hu, J Wang, Y Li, R Guo, X Dong, ...
Cell Reports 39 (1), 2022
232022
Mitochondrial stress induces an HRI-eIF2α pathway protective for cardiomyopathy
S Zhu, A Nguyen, J Pang, J Zhao, Z Chen, Z Liang, Y Gu, H Huynh, Y Bao, ...
Circulation 146 (13), 1028-1031, 2022
112022
3D genome encoded by LINE and SINE repeats
Z Liang, XD Fu
Cell Research 31 (6), 603-604, 2021
72021
Filamin C is Essential for mammalian myocardial integrity
T Wu, Y Xu, L Zhang, Z Liang, X Zhou, SM Evans, J Chen
PLoS genetics 19 (1), e1010630, 2023
42023
Mediator complex proximal Tail subunit MED30 is critical for Mediator core stability and cardiomyocyte transcriptional network
C Tan, S Zhu, Z Chen, C Liu, YE Li, M Zhu, Z Zhang, Z Zhang, L Zhang, ...
PLoS genetics 17 (9), e1009785, 2021
42021
Author Correction: Reversing a model of Parkinson’s disease with in situ converted nigral neurons
H Qian, X Kang, J Hu, D Zhang, Z Liang, F Meng, X Zhang, Y Xue, ...
Nature 584 (7820), E17-E17, 2020
42020
RUNX1 C-terminal Mutations Impair Blood Cell Differentiation by Perturbing Specific Enhancer-Promoter Networks
ND Jayne, Z Liang, DH Lim, PB Chen, C Diaz, KI Arimoto, L Xia, M Liu, ...
Blood Advances, bloodadvances. 2023011484, 2024
2024
Chromatin-associated RNA Dictates the ecDNA Interactome in the Nucleus
Z Liang, C Gilbreath, W Liu, Y Wang, MQ Zhang, DE Zhang, S Wu, XD Fu
bioRxiv, 2023
2023
Pathogenic RUNX1 C-Terminal Truncation Mutations Contribute to Differentiation Block and Result in Unique Changes in Transcription and Chromatin Organization
N Jayne, M Liu, B Chen, Z Liang, DH Lim, B Ren, XD Fu, DE Zhang
Blood 140 (Supplement 1), 996-997, 2022
2022
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