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Neuroscience Letters|October 16, 2015
L-periaxin interacts with S-periaxin through its PDZ domainYenan Yang, Yawei ShiRSC Advances|April 15, 2022
Retraction: Self-association of L-periaxin occurs via its acidic domain and NLS2/NLS3, and affects its trafficking in RSC96 cellsYenan Yang, Min Liang, Yawei ShiProtein Expression and Purification|November 26, 2020
Msx1 cooperates with Runx1 for inhibiting myoblast differentiationGuoqiang Zhou, Yenan Yang, Xumin Zhang, et al.RNA Biology|July 24, 2026
The Mediator complex: co-transcriptional regulation and beyondYenan Yang, Yuanming Zheng, Qiang Zhou, et al.Phenomics (Cham, Switzerland)|March 20, 2023
Global Quantitative Proteomics Analysis Reveals the Downstream Signaling Networks of Msx1 and Msx2 in Myoblast DifferentiationGuoqiang Zhou, Shuangping Ma, Ming Yang, et al.Communications Biology|April 20, 2022
Med23 supports angiogenesis and maintains vascular integrity through negative regulation of angiopoietin2 expressionYenan Yang, Qi Xiao, Jingwen Yin, et al.Biochemical and Biophysical Research Communications|June 22, 2019
Loss of homeoprotein Msx1 and Msx2 leading to athletic and kinematic impairment related to the increasing neural excitability of neurons in aberrant neocortex in miceBin Yu, Yuqing Jin, Yi Shen, et al.Nucleic Acids Research|January 31, 2023
An intellectual disability-related MED23 mutation dysregulates gene expression by altering chromatin conformation and enhancer activitiesYenan Yang, Chonghui Li, Ziyin Chen, et al.Cancer Letters|July 25, 2025
Phosphorylation of MSX1 controls tumorigenesis and bone development through targeting FBXW7 degradationYenan Yang, Xiang Jia, Yu Peng, et al.Nucleic Acids Research|October 20, 2020
Phosphorylation of Msx1 promotes cell proliferation through the Fgf9/18-MAPK signaling pathway during embryonic limb developmentYenan Yang, Xiaoli Zhu, Xiang Jia, et al.Pageof 2