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Comprehensive immunoproteogenomic analyses of malignant pleural mesothelioma
Hyun-Sung Lee, … , David J. Sugarbaker, Bryan M. Burt
Hyun-Sung Lee, … , David J. Sugarbaker, Bryan M. Burt
Published April 5, 2018
Citation Information: JCI Insight. 2018;3(7):e98575. https://doi.org/10.1172/jci.insight.98575.
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Research Article Immunology Oncology

Comprehensive immunoproteogenomic analyses of malignant pleural mesothelioma

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Abstract

We generated a comprehensive atlas of the immunologic cellular networks within human malignant pleural mesothelioma (MPM) using mass cytometry. Data-driven analyses of these high-resolution single-cell data identified 2 distinct immunologic subtypes of MPM with vastly different cellular composition, activation states, and immunologic function; mass spectrometry demonstrated differential abundance of MHC-I and -II neopeptides directly identified between these subtypes. The clinical relevance of this immunologic subtyping was investigated with a discriminatory molecular signature derived through comparison of the proteomes and transcriptomes of these 2 immunologic MPM subtypes. This molecular signature, representative of a favorable intratumoral cell network, was independently associated with improved survival in MPM and predicted response to immune checkpoint inhibitors in patients with MPM and melanoma. These data additionally suggest a potentially novel mechanism of response to checkpoint blockade: requirement for high measured abundance of neopeptides in the presence of high expression of MHC proteins specific for these neopeptides.

Authors

Hyun-Sung Lee, Hee-Jin Jang, Jong Min Choi, Jun Zhang, Veronica Lenge de Rosen, Thomas M. Wheeler, Ju-Seog Lee, Thuydung Tu, Peter T. Jindra, Ronald H. Kerman, Sung Yun Jung, Farrah Kheradmand, David J. Sugarbaker, Bryan M. Burt

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Figure 1

Schematic illustration of study design.

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Schematic illustration of study design.
BWH, Brigham and Women’s Hospita...
BWH, Brigham and Women’s Hospital; CTLA-4, cytotoxic t-lymphocyte associated protein 4; CyTOF, time-of-flight mass cytometry; MPM, malignant pleural mesothelioma; MSKCC, Memorial Sloan Kettering Cancer Center; PD-1, programmed cell death 1; SCAFFOLD, single-cell analysis by fixed force– and landmark-directed; SPADE, spanning-tree progression analysis of density-normalized events; TCGA, The Cancer Genome Atlas; and TiME, tumor immune microenvironment.

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