| Literature DB >> 33606996 |
Man Yu1, Zhengxin Peng1, Min Qin1, Yang Liu2, Jingning Wang2, Cai Zhang3, Jiaming Lin1, Tianqi Dong1, Lulu Wang1, Shasha Li1, Yongqin Yang1, Shan Xu1, Wencong Guo1, Xiao Zhang1, Mingjun Shi1, Huiming Peng1, Xianwen Luo1, Huixia Zhang1, Li Zhang4, Yan Li2, Xiang-Ping Yang3, Shuguo Sun5.
Abstract
Interferon-γ (IFN-γ)-mediated adaptive resistance is one major barrier to improving immunotherapy in solid tumors. However, the mechanisms are not completely understood. Here, we report that IFN-γ promotes nuclear translocation and phase separation of YAP after anti-PD-1 therapy in tumor cells. Hydrophobic interactions of the YAP coiled-coil domain mediate droplet initiation, and weak interactions of the intrinsically disordered region in the C terminus promote droplet formation. YAP partitions with the transcription factor TEAD4, the histone acetyltransferase EP300, and Mediator1 and forms transcriptional hubs for maximizing target gene transcriptions, independent of the canonical STAT1-IRF1 transcription program. Disruption of YAP phase separation reduced tumor growth, enhanced immune response, and sensitized tumor cells to anti-PD-1 therapy. YAP activity is negatively correlated with patient outcome. Our study indicates that YAP mediates the IFN-γ pro-tumor effect through its nuclear phase separation and suggests that YAP can be used as a predictive biomarker and target of anti-PD-1 combination therapy.Entities:
Keywords: Hippo pathway; IFN-gamma; PD-1/PD-L1; YAP; phase separation; transcriptional control; tumor immunoterapy
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Year: 2021 PMID: 33606996 DOI: 10.1016/j.molcel.2021.01.010
Source DB: PubMed Journal: Mol Cell ISSN: 1097-2765 Impact factor: 17.970