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The AKT-independent MET–V-ATPase–MTOR axis suppresses liver cancer vaccination

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摘要 Despite recent progress in hepatitis treatment,there have been no significant advances in the development of liver cancer vaccines in recent years.In this study,we investigated the regulatory effect and potential mechanism of hepatocyte growth factor receptor(MET,also known as HGFR)on tumor vaccinations for liver cancer in mice.Herein,we demonstrate that MET expression is significantly associated with the immunogenicity of liver cancer in mice and humans,and that MET depletion dramatically enhances the protective efficacy of chemotherapy-based anti-liver cancer vaccination.Mechanistically,MET repressed liver cancer immunogenicity independent of the traditional PI3K–AKT cascade,and MET interacted with vacuolar ATP synthase(V-ATPase)and mediated the activation of mammalian target of rapamycin(MTOR),thus suppressing liver cancer immunogenicity.The efficacy of chemotherapy-based liver cancer vaccination was markedly enhanced by targeting the MET–V-ATPase–MTOR axis,highlighting a translational strategy for identifying MET-associated drug candidates for cancer prevention.
出处 《Signal Transduction and Targeted Therapy》 SCIE CSCD 2020年第1期1189-1198,共10页 信号转导与靶向治疗(英文)
基金 supported by grants from the National Natural Science Foundation of China(31970696 and 81502975 to X.H.,and 81830089 to T.L.) the National Key Research and Development Program(2019YFC1316000 to T.L.) the China Postdoctoral Science Foundation(2016T90413 and 2015M581693 to X.H.) SEU-Alphamab Joint Center(SA2015001 to X.H.) Zhejiang Provincial Program for the Cultivation of High-level Innovative Health Talents(to X.B.).
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  • 1Robert Eil, Suman K. Vodnala, David Clever, Christopher A. Klebanoff, Madhusudhanan Sukumar, Jenny H. Pan, Douglas C. Palmer, Alena Gros, Tori N. Yamamoto, Shashank J. Patel, Geoffrey C. Guittard, Zhiya Yu, David S. Schrump, W. Marston Linehan, Nicholas P. Restifo,Christopher A. Klebanoff,Valentina Carbonaro, Klaus Okkenhaug, Rahul Roychoudhuri.Nature:死亡的肿瘤细胞释放出胞内钾离子来阻断免疫系统[J].现代生物医学进展,2016,16(31). 被引量:16

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