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Immunogenomic Intertumor Heterogeneity Across Primary and Metastatic Sites in a Patient With Lung Adenocarcinoma

Authors :
Carmen Behrens
Peixin Jiang
Curtis Gumbs
John V. Heymach
Ignacio I. Wistuba
Jun Li
Xingzhi Song
Alexandre Reuben
Don L. Gibbons
Runzhe Chen
Chi-Wan Chow
Latasha Little
Dongfeng Tan
Xin Hu
Jianhua Zhang
Kelly Quek
Akash Mitra
P. Andrew Futreal
Lauren Averett Byers
Junya Fujimoto
Jianjun Zhang
Ming Tang
Publication Year :
2021
Publisher :
Research Square Platform LLC, 2021.

Abstract

BackgroundLung cancer is the leading cause of cancer death, partially owing to its extensive heterogeneity. The analysis of intertumor heterogeneity has been limited by an inability to concurrently obtain tissue from synchronous metastases unaltered by multiple prior lines of therapy.MethodsIn order to study the relationship between genomic, epigenomic and T cell repertoire heterogeneity in a rare autopsy case from a young female never-smoker with late-stage lung adenocarcinoma (LUAD), we did whole-exome sequencing (WES), DNA methylation and T-cell receptor (TCR) sequencing to characterize the immunogenomic landscape of one primary and 19 synchronous metastatic tumors.ResultsWe observed heterogeneous mutation, methylation, and T cell patterns across distinct metastases including a set of prevalent T cell clonotypes which were completely excluded from left-side thoracic tumors. Though a limited number of predicted neoantigens were shared, these were associated with homology of the T cell repertoire across metastases. Lastly, ratio of methylated neoantigen coding mutations was negatively associated with T-cell density, richness and clonality, suggesting neoantigen methylation may partially drive immunosuppression.ConclusionsOur study demonstrates heterogeneous genomic and T cell profiles across synchronous metastases and how restriction of unique T cell clonotypes within an individual may differentially shape the genomic and epigenomic landscapes of synchronous lung metastases.

Details

Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....f3113ff2ae132b369d23fd4542f9964d
Full Text :
https://doi.org/10.21203/rs.3.rs-970663/v1