Upload Avatar (500 x 500)
沈宏杰
hongjieshen@fudan.edu.cn
中文, 英语
上海
复旦大学
Biomedical Sciences
  • 2009.09-2015.07 博士:复旦大学,生物医学研究院
  • 2005.09-2009.07 学士:四川大学,生物技术基地班
  • 2021.01-至今 - 复旦大学,生物医学研究院 - 研究员
  • 2018.08-2020.12 - 复旦大学,生物医学研究院 - 青年研究员
  • 2015.12-2018.07 - 复旦大学,生物医学研究院 - 博士后
  • 国家自然科学基金优秀青年基金 (2021)
  • 上海市科委青年启明星 (2019)
RNA及RNA结合蛋白的染色质调控功能
新型表观遗传修饰及调控因子的筛选鉴定
  • METTL14 regulates chromatin bivalent domains in mouse embryonic stem cells, Mandi Mu, Xinze Li, Li Dong, Jin Wang, Qingqing Cai, Yajun Hu, Duanduan Wang, Peng Zhao, Lei Zhang, Daixuan Zhang, Siyi Cheng, Li Tan, Feizhen Wu, Yujiang Geno Shi, Wenqi Xu, Yang Shi, and Hongjie Shen, 2023
  • Dynamic control of chromatin-associated m6A methylation regulates nascent RNA synthesis, Wenqi Xu, Chenxi He, Emily G. Kaye, Jiahui Li, Mandi Mu, Geoffrey M. Nelson, Li Dong, Jiahua Wang, Feizhen Wu, Yujiang Geno Shi, Karen Adelman, Fei Lan, Yang Shi and Hongjie Shen, 2022
  • METTL3 regulates heterochromatin in mouse embryonic stem cells, Wenqi Xu, Jiahui Li, Chenxi He, Jing Wen, Honghui Ma, Bowen Rong, Jianbo Diao, Liyong Wang, Jiahua Wang, Feizhen Wu, Li Tan, Yujiang Geno Shi, Yang Shi, Hongjie Shen, 2021
  • Binding to m6A RNA promotes YTHDF2-mediated phase separation, Jiahua Wang, Liyong Wang, Jianbo Diao, Yujiang Geno Shi, Yang Shi, Honghui Ma, Hongjie Shen, 2020
  • DNMT3A reads and connects histone H3K36me2 to DNA methylation, Wenqi Xu, Jiahui Li, Bowen Rong, Bin Zhao, Mei Wang, Ruofei Dai, Qilong Chen, Hang Liu, Zhongkai Gu, Shuxian Liu, Rui Guo, Hongjie Shen, Feizhen Wu, Fei Lan, 2020
  • When RNA methylation meets DNA methylation, Wenqi Xu, Hongjie Shen, 2022
  • Suppression of enhancer overactivation by a RACK7-Histone demethylase complex, Hongjie Shen, Wenqi Xu, Rui Guo, Bowen Rong, Lei Gu, Zhentian Wang, Chenxi He, Lijuan Zheng, Xin Hu, Zhen Hu, Zhi-Ming Shao, Pengyuan Yang, Feizhen Wu, Yujiang Geno Shi, Yang Shi, Fei Lan, 2016
  • Histone lysine demethylases in mammalian embryonic development, Hongjie Shen, Wenqi Xu, Fei Lan, 2017
  • RACK7 recognizes H3.3G34R mutation to suppress expression of MHC class II complex components and their delivery pathway in pediatric glioblastoma, Fangfang Jiao, Ze Li, Chen He, Wenqi Xu, Gensheng Yang, Tingting Liu, Hongjie Shen, Jiajun Cai, Jamie N Anastas, Ying Mao, Yongchun Yu, Fei Lan, Yujiang Geno Shi, Chris Jones, Yanhui Xu, Suzanne J Baker, Yang Shi, Rui Guo, 2020
  • The endogenous retrovirus-derived long noncoding RNA TROJAN promotes triple-negative breast cancer progression via ZMYND8 degradation, Xi Jin, Xiao-En Xu, Yi-Zhou Jiang, Yi-Rong Liu, Wei Sun, Ya-Jie Guo, Yi-Xing Ren, Wen-Jia Zuo, Xin Hu, Sheng-Lin Huang, Hong-Jie Shen, Fei Lan, Yun-Fei He, Guo-Hong Hu, Gen-Hong Di, Xiang-Huo He, Da-Qiang Li, Suling Liu, Ke-Da Yu, Zhi-Ming Shao, 2019
  • Repression of human and mouse brain inflammaging transcriptome by broad gene-body histone hyperacetylation, Hao Cheng, Hongwen Xuan, Christopher D Green, Yixing Han, Na Sun, Hongjie Shen, Joseph McDermott, David A Bennett, Fei Lan, Jing-Dong J Han, 2018
  • PHF5A Epigenetically Inhibits Apoptosis to Promote Breast Cancer Progression, Yi-Zi Zheng, Meng-Zhu Xue, Hong-Jie Shen, Xiao-Guang Li, Ding Ma, Yue Gong, Yi-Rong Liu, Feng Qiao, Hong-Yan Xie, Bi Lian, Wei-Li Sun, Hai-Yun Zhao, Ling Yao, Wen-Jia Zuo, Da-Qiang Li, Peng Wang, Xin Hu, Zhi-Ming Shao, 2018
  • Zc3h13 Regulates Nuclear RNA m6A Methylation and Mouse Embryonic Stem Cell Self-Renewal, Jing Wen, Ruitu Lv, Honghui Ma, Hongjie Shen, Chenxi He, Jiahua Wang, Fangfang Jiao, Hang Liu, Pengyuan Yang, Li Tan, Fei Lan, Yujiang Geno Shi, Chuan He, Yang Shi, Jianbo Diao, 2018
  • ZMYND8 Reads the Dual Histone Mark H3K4me1-H3K14ac to Antagonize the Expression of Metastasis-Linked Genes, Na Li, Yuanyuan Li, Jie Lv, Xiangdong Zheng, Hong Wen, Hongjie Shen, Guangjing Zhu, Tsai-Yu Chen, Shilpa S Dhar, Pu-Yeh Kan, Zhibin Wang, Ramin Shiekhattar
Rna Rna结合蛋白 染色质 调控 表观遗传学 修饰 筛选 鉴定 调控因子 生物化学

联系我们

欢迎与我们交流!
* Required
* Required
* Required
* Invalid email address
提交此表单,即表示您同意 IoT ONE 可以与您联系并分享洞察和营销信息。
不,谢谢,我不想收到来自 IoT ONE 的任何营销电子邮件。
提交

感谢您的信息!
我们会很快与你取得联系。