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About the database ScholarIQanswers from OpenAlex & ORCID
How has Yanhui Xu's publication output changed over time?
ScholarIQpublication output · 2006–2020
Output grew0% over the shown period — from 2 works in 2006 to 2 in 2020.
2
1
1
1
1
2
1
2
20062008201020122013201420192020
What are the most-cited papers on Yanhui Xu?
ScholarIQmost cited works
Inhibition of α-KG-dependent histone and DNA demethylases by fumarate and succinate that are accumulated in mutations of FH and SDH tumor suppressors
Mengtao Xiao, Hui Yang, Wei Xu, Shenghong Ma, Huaipeng Lin, Honguang Zhu, Lixia Liu, Ying Liu, Yang Chen, Yanhui Xu, Shimin Zhao, Dan Ye, Yue Xiong, Kun‐Liang Guan
S168778273. 20121,153 CitationsOPEN ACCESS
Structure of the Protein Phosphatase 2A Holoenzyme
Yanhui Xu, Yongna Xing, Yu Chen, Chao Yang, Zheng Lin, Eugene Fan, Jong W. Yu, Stefan Strack, Philip D. Jeffrey, Yigong Shi
S110447773. 2006459 CitationsOPEN ACCESS
Crystal Structure of TET2-DNA Complex: Insight into TET-Mediated 5mC Oxidation
Lulu Hu, Ze Li, Jingdong Cheng, Qinhui Rao, Wei Gong, Mengjie Liu, Yujiang Geno Shi, Jiayu Zhu, Ping Wang, Yanhui Xu
S110447773. 2013450 CitationsOPEN ACCESS
Structural insights into the YAP and TEAD complex
Ze Li, Bin Zhao, Ping Wang, Fei Chen, Zhenghong Dong, Huirong Yang, Kun‐Liang Guan, Yanhui Xu
S168778273. 2010408 CitationsOPEN ACCESS
Crystal structure of the YTH domain of YTHDF2 reveals mechanism for recognition of N6-methyladenosine
Tingting Zhu, Ian A. Roundtree, Ping Wang, Xiao Wang, Li Wang, Chang Sun, Yuan Tian, Jie Li, Chuan He, Yanhui Xu
S128296271. 2014404 CitationsOPEN ACCESS
Related on ScholarIQ
Fudan University
Institution
Inhibition of α-KG-dependent histone and DNA demethylases by fumarate and succinate that are accumulated in mutations of FH and SDH tumor suppressors
Paper
Structure of the Protein Phosphatase 2A Holoenzyme
Paper
Crystal Structure of TET2-DNA Complex: Insight into TET-Mediated 5mC Oxidation
Paper
Structural insights into the YAP and TEAD complex
Paper
Crystal structure of the YTH domain of YTHDF2 reveals mechanism for recognition of N6-methyladenosine
Paper