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Signal Transduction and Targeted Therapy|April 4, 2018
Increased mtDNA copy number promotes cancer progression by enhancing mitochondrial oxidative phosphorylation in microsatellite-stable colorectal cancerXiacheng Sun, Lei Zhan, Yibing Chen, et al.Signal Transduction and Targeted Therapy|August 13, 2020
CD146, from a melanoma cell adhesion molecule to a signaling receptorZhaoqing Wang, Qingji Xu, Nengwei Zhang, et al.Signal Transduction and Targeted Therapy|August 27, 2020
IGF-1R inhibition induces MEK phosphorylation to promote survival in colon carcinomasQing Wang, Yan Zhang, Jiang Zhu, et al.Signal Transduction and Targeted Therapy|April 11, 2023
Oncolytic virotherapy: basic principles, recent advances and future directionsDanni Lin, Yinan Shen, Tingbo LiangSignal Transduction and Targeted Therapy|August 5, 2020
The role of histone methylation in the development of digestive cancers: a potential direction for cancer managementYuan Chen, Bo Ren, Jinshou Yang, et al.Signal Transduction and Targeted Therapy|April 7, 2023
Cdc2-like kinases: structure, biological function, and therapeutic targets for diseasesMengqiu Song, Luping Pang, Mengmeng Zhang, et al.Signal Transduction and Targeted Therapy|March 28, 2021
Cathepsin L plays a key role in SARS-CoV-2 infection in humans and humanized mice and is a promising target for new drug developmentMiao-Miao Zhao, Wei-Li Yang, Fang-Yuan Yang, et al.Signal Transduction and Targeted Therapy|April 1, 2021
Gender associates with both susceptibility to infection and pathogenesis of SARS-CoV-2 in Syrian hamsterLunzhi Yuan, Huachen Zhu, Ming Zhou, et al.Signal Transduction and Targeted Therapy|August 9, 2020
The AKT-independent MET-V-ATPase-MTOR axis suppresses liver cancer vaccinationXing Huang, Xingyuan Xu, Xun Wang, et al.Signal Transduction and Targeted Therapy|May 25, 2023
3-Hydroxybutyrate ameliorates insulin resistance by inhibiting PPARγ Ser273 phosphorylation in type 2 diabetic miceYudian Zhang, Zihua Li, Xinyi Liu, et al.Pageof 183