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Dual inhibition of AKT‐mTOR and AR signaling by targeting HDAC3 in PTEN‐ or SPOP‐mutated prostate cancer

AKT‐mTOR and androgen receptor (AR) signaling pathways are aberrantly activated in prostate cancer due to frequent PTEN deletions or SPOP mutations. A clinical barrier is that targeting one of them often activates the other. Here, we demonstrate that HDAC3 augments AKT phosphorylation in prostate ca...

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Detalles Bibliográficos
Autores principales: Yan, Yuqian, An, Jian, Yang, Yinhui, Wu, Di, Bai, Yang, Cao, William, Ma, Linlin, Chen, Junhui, Yu, Zhendong, He, Yundong, Jin, Xin, Pan, Yunqian, Ma, Tao, Wang, Shangqian, Hou, Xiaonan, Weroha, Saravut John, Karnes, R Jeffrey, Zhang, Jun, Westendorf, Jennifer J, Wang, Liguo, Chen, Yu, Xu, Wanhai, Zhu, Runzhi, Wang, Dejie, Huang, Haojie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5887910/
https://www.ncbi.nlm.nih.gov/pubmed/29523594
http://dx.doi.org/10.15252/emmm.201708478
Descripción
Sumario:AKT‐mTOR and androgen receptor (AR) signaling pathways are aberrantly activated in prostate cancer due to frequent PTEN deletions or SPOP mutations. A clinical barrier is that targeting one of them often activates the other. Here, we demonstrate that HDAC3 augments AKT phosphorylation in prostate cancer cells and its overexpression correlates with AKT phosphorylation in patient samples. HDAC3 facilitates lysine‐63‐chain polyubiquitination and phosphorylation of AKT, and this effect is mediated by AKT deacetylation at lysine 14 and 20 residues and HDAC3 interaction with the scaffold protein APPL1. Conditional homozygous deletion of Hdac3 suppresses prostate tumorigenesis and progression by concomitant blockade of AKT and AR signaling in the Pten knockout mouse model. Pharmacological inhibition of HDAC3 using a selective HDAC3 inhibitor RGFP966 inhibits growth of both PTEN‐deficient and SPOP‐mutated prostate cancer cells in culture, patient‐derived organoids and xenografts in mice. Our study identifies HDAC3 as a common upstream activator of AKT and AR signaling and reveals that dual inhibition of AKT and AR pathways is achievable by single‐agent targeting of HDAC3 in prostate cancer.