| Literature DB >> 34467615 |
Andrew J Freeman1,2, Stephin J Vervoort2,3, Jessica Michie1,2, Kelly M Ramsbottom1, John Silke4,5, Conor J Kearney2,3, Jane Oliaro1,2,6.
Abstract
The success of cancer immunotherapy is limited to a subset of patients, highlighting the need to identify the processes by which tumors evade immunity. Using CRISPR/Cas9 screening, we reveal that melanoma cells lacking HOIP, the catalytic subunit of LUBAC, are highly susceptible to both NK and CD8+ T-cell-mediated killing. We demonstrate that HOIP-deficient tumor cells exhibit increased sensitivity to the combined effect of the inflammatory cytokines, TNF and IFN-γ, released by NK and CD8+ T cells upon target recognition. Both genetic deletion and pharmacological inhibition of HOIP augment tumor cell sensitivity to combined TNF and IFN-γ. Together, we unveil a protective regulatory axis, involving HOIP, which limits a transcription-dependent form of cell death that engages both intrinsic and extrinsic apoptotic machinery upon exposure to TNF and IFN-γ. Our findings highlight HOIP inhibition as a potential strategy to harness and enhance the killing capacity of TNF and IFN-γ during immunotherapy.Entities:
Keywords: CRISPR screen; HOIP; IFN-gamma; TNF; immunotherapy
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Year: 2021 PMID: 34467615 PMCID: PMC8567220 DOI: 10.15252/embr.202153391
Source DB: PubMed Journal: EMBO Rep ISSN: 1469-221X Impact factor: 8.807