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Fa-Xing Yu

Showing results (41-50 of 75) with videos related to

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Cell Reports. Medicine|October 5, 2024
Gene therapy for diffuse pleural mesotheliomas in preclinical models by concurrent expression of NF2 and SuperHippoRui Zhu, Xincheng Liu, Xu Zhang, et al.
Cell Death & Disease|August 1, 2023
WWC1/2 regulate spinogenesis and cognition in mice by stabilizing AMOTRunyi Cao, Rui Zhu, Zhao Sha, et al.
Bioscience Reports|April 21, 2026
Patients-derived AMOTL1 mutations lead to defective cell migration and tissue developmentJiaqian Luo, Ruxin Jin, Fang Geng, et al.
Journal of Molecular Cell Biology|March 22, 2018
Staurosporine targets the Hippo pathway to inhibit cell growthXueyan Ma, Peixue Li, Peihao Chen, et al.
Cell Reports|August 31, 2022
Transmembrane protein KIRREL1 regulates Hippo signaling via a feedback loop and represents a therapeutic target in YAP/TAZ-active cancersYuan Gu, Yu Wang, Zhao Sha, et al.
Molecular Therapy. Methods & Clinical Development|April 8, 2020
Site-Directed Mutagenesis Improves the Transduction Efficiency of Capsid Library-Derived Recombinant AAV VectorsGai Ran, Xiao Chen, Yilin Xie, et al.
Genes & Development|June 12, 2013
Protein kinase A activates the Hippo pathway to modulate cell proliferation and differentiationFa-Xing Yu, Yifan Zhang, Hyun Woo Park, et al.
Genes & Development|June 26, 2015
A YAP/TAZ-induced feedback mechanism regulates Hippo pathway homeostasisToshiro Moroishi, Hyun Woo Park, Baodong Qin, et al.
Science Advances|January 22, 2025
WWC proteins-mediated compensatory mechanism restricts schwannomatosis driven by <i>NF2</i> loss of functionXueying Wang, Rui Zhu, Pengcheng Yu, et al.
Clinical and Translational Medicine|March 21, 2024
JCAD deficiency delayed liver regenerative repair through the Hippo-YAP signalling pathwayLi Zhang, Yong-Yu Yang, Li Xie, et al.
Pageof 8

Showing results (41-50 of 75) with videos related to

Sort By:
Pageof 8
Cell Reports. Medicine|October 5, 2024
Gene therapy for diffuse pleural mesotheliomas in preclinical models by concurrent expression of NF2 and SuperHippoRui Zhu, Xincheng Liu, Xu Zhang, et al.
Cell Death & Disease|August 1, 2023
WWC1/2 regulate spinogenesis and cognition in mice by stabilizing AMOTRunyi Cao, Rui Zhu, Zhao Sha, et al.
Bioscience Reports|April 21, 2026
Patients-derived AMOTL1 mutations lead to defective cell migration and tissue developmentJiaqian Luo, Ruxin Jin, Fang Geng, et al.
Journal of Molecular Cell Biology|March 22, 2018
Staurosporine targets the Hippo pathway to inhibit cell growthXueyan Ma, Peixue Li, Peihao Chen, et al.
Cell Reports|August 31, 2022
Transmembrane protein KIRREL1 regulates Hippo signaling via a feedback loop and represents a therapeutic target in YAP/TAZ-active cancersYuan Gu, Yu Wang, Zhao Sha, et al.
Molecular Therapy. Methods & Clinical Development|April 8, 2020
Site-Directed Mutagenesis Improves the Transduction Efficiency of Capsid Library-Derived Recombinant AAV VectorsGai Ran, Xiao Chen, Yilin Xie, et al.
Genes & Development|June 12, 2013
Protein kinase A activates the Hippo pathway to modulate cell proliferation and differentiationFa-Xing Yu, Yifan Zhang, Hyun Woo Park, et al.
Genes & Development|June 26, 2015
A YAP/TAZ-induced feedback mechanism regulates Hippo pathway homeostasisToshiro Moroishi, Hyun Woo Park, Baodong Qin, et al.
Science Advances|January 22, 2025
WWC proteins-mediated compensatory mechanism restricts schwannomatosis driven by <i>NF2</i> loss of functionXueying Wang, Rui Zhu, Pengcheng Yu, et al.
Clinical and Translational Medicine|March 21, 2024
JCAD deficiency delayed liver regenerative repair through the Hippo-YAP signalling pathwayLi Zhang, Yong-Yu Yang, Li Xie, et al.
Pageof 8