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Xichen Bao

Showing results (31-40 of 43) with videos related to

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Nature Communications|December 31, 2024
DDX18 coordinates nucleolus phase separation and nuclear organization to control the pluripotency of human embryonic stem cellsXianle Shi, Yanjing Li, Hongwei Zhou, et al.
Cell Research|December 17, 2014
The p53-induced lincRNA-p21 derails somatic cell reprogramming by sustaining H3K9me3 and CpG methylation at pluripotency gene promotersXichen Bao, Haitao Wu, Xihua Zhu, et al.
Nature|March 4, 2021
The RNA m<sup>6</sup>A reader YTHDC1 silences retrotransposons and guards ES cell identityJiadong Liu, Mingwei Gao, Jiangping He, et al.
The Journal of Biological Chemistry|January 6, 2017
Fumarylacetoacetate Hydrolase Knock-out Rabbit Model for Hereditary Tyrosinemia Type 1Li Li, Quanjun Zhang, Huaqiang Yang, et al.
Nature Cell Biology|May 19, 2015
Autophagy and mTORC1 regulate the stochastic phase of somatic cell reprogrammingYasong Wu, Yuan Li, Hui Zhang, et al.
Nature Communications|December 8, 2025
Monitoring rapid degradation of NANOG reveals UTP15 maintains pluripotency by regulating nascent transcriptsMingqiang Deng, Dongmei He, Xiwei Wang, et al.
Cell Stem Cell|October 15, 2014
Transcriptional pause release is a rate-limiting step for somatic cell reprogrammingLongqi Liu, Yan Xu, Minghui He, et al.
Stem Cell Reports|March 7, 2017
Generation of Human Liver Chimeric Mice with Hepatocytes from Familial Hypercholesterolemia Induced Pluripotent Stem CellsJiayin Yang, Yu Wang, Ting Zhou, et al.
Nature Cell Biology|June 17, 2018
Publisher Correction: NCoR/SMRT co-repressors cooperate with c-MYC to create an epigenetic barrier to somatic cell reprogrammingQiang Zhuang, Wenjuan Li, Christina Benda, et al.
Nature Cell Biology|March 14, 2018
NCoR/SMRT co-repressors cooperate with c-MYC to create an epigenetic barrier to somatic cell reprogrammingQiang Zhuang, Wenjuan Li, Christina Benda, et al.
Pageof 5

Showing results (31-40 of 43) with videos related to

Sort By:
Pageof 5
Nature Communications|December 31, 2024
DDX18 coordinates nucleolus phase separation and nuclear organization to control the pluripotency of human embryonic stem cellsXianle Shi, Yanjing Li, Hongwei Zhou, et al.
Cell Research|December 17, 2014
The p53-induced lincRNA-p21 derails somatic cell reprogramming by sustaining H3K9me3 and CpG methylation at pluripotency gene promotersXichen Bao, Haitao Wu, Xihua Zhu, et al.
Nature|March 4, 2021
The RNA m<sup>6</sup>A reader YTHDC1 silences retrotransposons and guards ES cell identityJiadong Liu, Mingwei Gao, Jiangping He, et al.
The Journal of Biological Chemistry|January 6, 2017
Fumarylacetoacetate Hydrolase Knock-out Rabbit Model for Hereditary Tyrosinemia Type 1Li Li, Quanjun Zhang, Huaqiang Yang, et al.
Nature Cell Biology|May 19, 2015
Autophagy and mTORC1 regulate the stochastic phase of somatic cell reprogrammingYasong Wu, Yuan Li, Hui Zhang, et al.
Nature Communications|December 8, 2025
Monitoring rapid degradation of NANOG reveals UTP15 maintains pluripotency by regulating nascent transcriptsMingqiang Deng, Dongmei He, Xiwei Wang, et al.
Cell Stem Cell|October 15, 2014
Transcriptional pause release is a rate-limiting step for somatic cell reprogrammingLongqi Liu, Yan Xu, Minghui He, et al.
Stem Cell Reports|March 7, 2017
Generation of Human Liver Chimeric Mice with Hepatocytes from Familial Hypercholesterolemia Induced Pluripotent Stem CellsJiayin Yang, Yu Wang, Ting Zhou, et al.
Nature Cell Biology|June 17, 2018
Publisher Correction: NCoR/SMRT co-repressors cooperate with c-MYC to create an epigenetic barrier to somatic cell reprogrammingQiang Zhuang, Wenjuan Li, Christina Benda, et al.
Nature Cell Biology|March 14, 2018
NCoR/SMRT co-repressors cooperate with c-MYC to create an epigenetic barrier to somatic cell reprogrammingQiang Zhuang, Wenjuan Li, Christina Benda, et al.
Pageof 5