Genome-wide Screens Identify Lineage- and Tumor-Specific Genes Modulating MHC-I- and MHC-II-Restricted Immunosurveillance of Human Lymphomas

全基因组筛选鉴定出调控人类淋巴瘤MHC-I和MHC-II限制性免疫监视的谱系和肿瘤特异性基因

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作者:Devin Dersh ,James D Phelan ,Megan E Gumina ,Boya Wang ,Jesse H Arbuckle ,Jaroslav Holly ,Rigel J Kishton ,Tovah E Markowitz ,Mina O Seedhom ,Nathan Fridlyand ,George W Wright ,Da Wei Huang ,Michele Ceribelli ,Craig J Thomas ,Justin B Lack ,Nicholas P Restifo ,Thomas M Kristie ,Louis M Staudt ,Jonathan W Yewdell

Abstract

Tumors frequently subvert major histocompatibility complex class I (MHC-I) peptide presentation to evade CD8+ T cell immunosurveillance, though how this is accomplished is not always well defined. To identify the global regulatory networks controlling antigen presentation, we employed genome-wide screening in human diffuse large B cell lymphomas (DLBCLs). This approach revealed dozens of genes that positively and negatively modulate MHC-I cell surface expression. Validated genes clustered in multiple pathways including cytokine signaling, mRNA processing, endosomal trafficking, and protein metabolism. Genes can exhibit lymphoma subtype- or tumor-specific MHC-I regulation, and a majority of primary DLBCL tumors displayed genetic alterations in multiple regulators. We established SUGT1 as a major positive regulator of both MHC-I and MHC-II cell surface expression. Further, pharmacological inhibition of two negative regulators of antigen presentation, EZH2 and thymidylate synthase, enhanced DLBCL MHC-I presentation. These and other genes represent potential targets for manipulating MHC-I immunosurveillance in cancers, infectious diseases, and autoimmunity.

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