Hypoxia-Induced VISTA Promotes the Suppressive Function of Myeloid-Derived Suppressor Cells in the Tumor Microenvironment.
Jie DengJiannan LiAurelien SardeJ Louise LinesYu-Chi LeeDavid C QianDov A PechenickRichard ManivanhIsabelle Le MercierChristopher H LowreyFrederick S VarnChao ChengDavid A LeibRandolph J NoelleRodwell MabaeraPublished in: Cancer immunology research (2019)
Tumor hypoxia is a negative prognostic factor that is implicated in oncogenic signal activation, immune escape, and resistance to treatment. Identifying the mechanistic role of hypoxia in immune escape and resistance to immune-checkpoint inhibitors may aid the identification of therapeutic targets. We and others have shown that V-domain Ig suppressor of T-cell activation (VISTA), a negative checkpoint regulator in the B7 family, is highly expressed in the tumor microenvironment in tumor models and primary human cancers. In this study, we show that VISTA and HIF1α activity are correlated in a cohort of colorectal cancer patients. High VISTA expression was associated with worse overall survival. We used the CT26 colon cancer model to investigate the regulation of VISTA by hypoxia. Compared with less hypoxic tumor regions or draining lymph nodes, regions of profound hypoxia in the tumor microenvironment were associated with increased VISTA expression on tumor-infiltrating myeloid-derived suppressor cells (MDSC). Using chromatin immunoprecipitation and genetic silencing, we show that hypoxia-inducible factor (HIF)-1α binding to a conserved hypoxia response element in the VISTA promoter upregulated VISTA on myeloid cells. Further, antibody targeting or genetic ablation of VISTA under hypoxia relieved MDSC-mediated T-cell suppression, revealing VISTA as a mediator of MDSC function. Collectively, these data suggest that targeting VISTA may mitigate the deleterious effects of hypoxia on antitumor immunity.
Keyphrases
- endothelial cells
- induced apoptosis
- transcription factor
- cell cycle arrest
- lymph node
- prognostic factors
- poor prognosis
- dna damage
- gene expression
- acute myeloid leukemia
- cancer therapy
- oxidative stress
- magnetic resonance imaging
- cell death
- young adults
- cell cycle
- dendritic cells
- magnetic resonance
- intellectual disability
- rectal cancer
- bone marrow
- smoking cessation
- image quality
- contrast enhanced
- combination therapy
- childhood cancer