Single cell view of tumor microenvironment gradients in pleural mesothelioma

Author:

Giotti BrunoORCID,Dolasia Komal,Zhao William,Cai Peiwen,Sweeney Robert,Merritt Elliot,Kiner Evgeny,Kim Grace,Bhagwat Atharva,Hegde Samarth,Fitzgerald Bailey,Shroff Sanjana,Dawson Travis,Garcia-barros Monica,Abdul-ghafar Jamshid,Chen Rachel,Gnjatic Sacha,Soto Alan,Brody Rachel,Kim-Schulze Seunghee,Chen ZhihongORCID,Beaumont Kristin G.,Merad Miriam,Flores Raja,Sebra Robert,Horowitz Amir,Marron Thomas U,Tocheva Anna,Wolf Andrea,Tsankov Alexander M.

Abstract

ABSTRACTImmunotherapies have shown great promise in pleural mesothelioma (PM), yet most patients still do not achieve significant clinical response, highlighting the importance of improving understanding of the tumor microenvironment (TME). Here, we utilized high-throughput, single-cell RNA-sequencing tode novoidentify 54 expression programs and construct a comprehensive cellular catalogue of the PM TME. We found four cancer-intrinsic programs associated with poor disease outcome and a novel fetal-like, endothelial cell population that likely responds to VEGF signaling and promotes angiogenesis. Throughout cellular compartments, we observe substantial difference in the TME associated with a cancer-intrinsic sarcomatoid signature, including enrichment in fetal-like endothelial cells, CXCL9+ macrophages, cytotoxic, exhausted, and regulatory T cells, which we validated using imaging and bulk deconvolution analyses on two independent cohorts. Finally, we show, both computationally and experimentally, that NKG2A-HLA-E interaction between NK and tumor cells represents an important new therapeutic axis in PM, especially for epithelioid cases.Statement of SignificanceThis manuscript presents the first single-cell RNA-sequencing atlas of pleural mesothelioma (PM) tumor microenvironment. Findings of translational relevance, validated experimentally and using independent bulk cohorts, include identification of gene programs predictive of survival, a fetal-like endothelial cell population, and NKG2A blockade as a promising new immunotherapeutic intervention in PM.

Publisher

Cold Spring Harbor Laboratory

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