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Despite the successes of immunotherapy in cancer treatment over recent decades, less than <10%-20% cancer cases have demonstrated durable responses from immune checkpoint blockade. To enhance the efficacy of immunotherapies, combination therapies suppressing multiple immune evasion mechanisms are increasingly contemplated. To better understand immune cell surveillance and diverse immune evasion responses in tumor tissues, we comprehensively characterized the immune landscape of more than 1,000 tumors across ten different cancers using CPTAC pan-cancer proteogenomic data. We identified seven distinct immune subtypes based on integrative learning of cell type compositions and pathway activities. We then thoroughly categorized unique genomic, epigenetic, transcriptomic, and proteomic changes associated with each subtype. Further leveraging the deep phosphoproteomic data, we studied kinase activities in different immune subtypes, which revealed potential subtype-specific therapeutic targets. Insights from this work will facilitate the development of future immunotherapy strategies and enhance precision targeting with existing agents.
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Francesca Petralia
Mount Sinai Health System
Weiping Ma
Institute of New Materials
Tomer M. Yaron
Boston Children's Hospital
Cell
Harvard University
Massachusetts Institute of Technology
University of Michigan
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Petralia et al. (Thu,) studied this question.
synapsesocial.com/papers/69d97a6294760e72e6a3ca70 — DOI: https://doi.org/10.1016/j.cell.2024.01.027
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