Lang Bu
Wuhan University
7 Papers
Lang Bu is an academic researcher from Wuhan University. The author has contributed to research in topics: Medicine & Cancer. The author has an hindex of 1, co-authored 1 publications.
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Papers
Doxorubicin resistant cancer cells activate myeloid-derived suppressor cells by releasing PGE2.
Yuan Rong,Chun-Hui Yuan,Zhen Qu,Hu Zhou,Qing Guan,Na Yang,Xiao-Hua Leng,Lang Bu,Ke Wu,Fu-Bing Wang +9 more
TL;DR: Results reveal, for the first time, a novel role of PGE2/miR-10a/AMPK signaling axis in chemotherapy-induced immune resistance, which might be targeted for treatment of chemotherapy resistant tumors.
IKBKE phosphorylates and stabilizes Snail to promote breast cancer invasion and metastasis
Wei Xie,Qiwei Jiang,Xueji Wu,Lei Wang,Bin Gao,Zicheng Sun,Xiaomei Zhang,Lang Bu,Ying Lin,Qiang Huang,Jie Li,Jianping Guo +11 more
TL;DR: It is reported that depletion of IKBke markedly decreases polyoma virus middle T antigen (PyVMT)-induced mouse mammary tumorigenesis and subsequent lung metastasis and highlights the potential of targeting IKBKE for metastatic breast cancer therapies.
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AKT blocks SIK1-mediated repression of STAT3 to promote breast tumorigenesis.
Zhi-Yin Sun,Qiwei Jiang,Bin Gao,Xiaomei Zhang,Lang Bu,Lei Wang,Ying Lin,Wei Xie,Jie Li,Jian-ping Guo +9 more
TL;DR: In this article , Mass spectrometry-based analyses demonstrated that salt-inducible kinase 1 (SIK1) binds AKT and undergoes AKT-mediated phosphorylation, which compromises SIK1 tumor-suppressive functions.
AMPK phosphorylates and stabilises copper transporter 1 to synergise metformin and copper chelator for breast cancer therapy
Xiaomei Zhang,Qiwei Jiang,Yaqing Su,Lang Bu,Zicheng Sun,Xueji Wu,Bin Gao,Lei Wang,Ying Lin,Wei Lin Xie,Jianping Guo +10 more
TL;DR: The connection between energy response and copper homoeostasis is linked by AMPK phosphorylating and stabilising CTR1, which provides a promising strategy to combat breast cancer by combining AMPK agonists and copper chelators.
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Targeting protein kinases benefits cancer immunotherapy.
TL;DR: In this paper , the authors comprehensively summarize the role of protein kinases in modulating immune checkpoints both in tumor and immune cells, and reshaping tumor immune microenvironments by evoking innate immune response and neoantigen generation or presentation.
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