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Genomic Correlates of Immune-Cell Infiltrates in Colorectal Carcinoma

Cell Reports · 2016 · Vol. 15(4) · pp. 857–865
Marios GiannakisXinmeng Jasmine MuSachet A. ShuklaZhi Rong QianOfir CohenReiko NishiharaSamira BahlYin CaoAli Amin‐MansourMai YamauchiYasutaka SukawaChip StewartMara RosenbergKosuke MimaKentaro InamuraKatsuhiko NoshoJonathan A. NowakMichael S. LawrenceE. GiovannucciAnthony T.�C. ChanKimmie NgJeffrey A. MeyerhardtEliezer M. Van AllenGad GetzStacey B. GabrielEric S. LanderCatherine J. WuCharles S. FuchsShuji OginoLevi A. Garraway

Abstract

Large-scale genomic characterization of tumors from prospective cohort studies may yield new insights into cancer pathogenesis. We performed whole-exome sequencing of 619 incident colorectal cancers (CRCs) and integrated the results with tumor immunity, pathology, and survival data. We identified recurrently mutated genes in CRC, such as BCL9L, RBM10, CTCF, and KLF5, that were not previously appreciated in this disease. Furthermore, we investigated the genomic correlates of immune-cell infiltration and found that higher neoantigen load was positively associated with overall lymphocytic infiltration, tumor-infiltrating lymphocytes (TILs), memory T cells, and CRC-specific survival. The association with TILs was evident even within microsatellite-stable tumors. We also found positive selection of mutations in HLA genes and other components of the antigen-processing machinery in TIL-rich tumors. These results may inform immunotherapeutic approaches in CRC. More generally, this study demonstrates a framework for future integrative molecular epidemiology research in colorectal and other malignancies.

Cancer Immunotherapy and BiomarkersLymphoma Diagnosis and TreatmentImmune Cell Function and InteractionMicrosatellite instabilityColorectal cancerImmune systemBiologyTumor-infiltrating lymphocytesExome sequencingExomeCancer researchImmunologyCancer
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