| Literature DB >> 33417831 |
Chen Huang1, Lijun Chen2, Sara R Savage1, Rodrigo Vargas Eguez2, Yongchao Dou1, Yize Li3, Felipe da Veiga Leprevost4, Eric J Jaehnig1, Jonathan T Lei1, Bo Wen1, Michael Schnaubelt2, Karsten Krug5, Xiaoyu Song6, Marcin Cieślik7, Hui-Yin Chang4, Matthew A Wyczalkowski3, Kai Li1, Antonio Colaprico8, Qing Kay Li2, David J Clark2, Yingwei Hu2, Liwei Cao2, Jianbo Pan9, Yuefan Wang2, Kyung-Cho Cho2, Zhiao Shi1, Yuxing Liao1, Wen Jiang1, Meenakshi Anurag10, Jiayi Ji6, Seungyeul Yoo11, Daniel Cui Zhou3, Wen-Wei Liang3, Michael Wendl3, Pankaj Vats12, Steven A Carr5, D R Mani5, Zhen Zhang2, Jiang Qian13, Xi S Chen8, Alexander R Pico14, Pei Wang11, Arul M Chinnaiyan7, Karen A Ketchum15, Christopher R Kinsinger16, Ana I Robles16, Eunkyung An16, Tara Hiltke16, Mehdi Mesri16, Mathangi Thiagarajan17, Alissa M Weaver18, Andrew G Sikora19, Jan Lubiński20, Małgorzata Wierzbicka21, Maciej Wiznerowicz22, Shankha Satpathy5, Michael A Gillette23, George Miles1, Matthew J Ellis10, Gilbert S Omenn24, Henry Rodriguez16, Emily S Boja16, Saravana M Dhanasekaran25, Li Ding3, Alexey I Nesvizhskii7, Adel K El-Naggar26, Daniel W Chan27, Hui Zhang28, Bing Zhang29.
Abstract
We present a proteogenomic study of 108 human papilloma virus (HPV)-negative head and neck squamous cell carcinomas (HNSCCs). Proteomic analysis systematically catalogs HNSCC-associated proteins and phosphosites, prioritizes copy number drivers, and highlights an oncogenic role for RNA processing genes. Proteomic investigation of mutual exclusivity between FAT1 truncating mutations and 11q13.3 amplifications reveals dysregulated actin dynamics as a common functional consequence. Phosphoproteomics characterizes two modes of EGFR activation, suggesting a new strategy to stratify HNSCCs based on EGFR ligand abundance for effective treatment with inhibitory EGFR monoclonal antibodies. Widespread deletion of immune modulatory genes accounts for low immune infiltration in immune-cold tumors, whereas concordant upregulation of multiple immune checkpoint proteins may underlie resistance to anti-programmed cell death protein 1 monotherapy in immune-hot tumors. Multi-omic analysis identifies three molecular subtypes with high potential for treatment with CDK inhibitors, anti-EGFR antibody therapy, and immunotherapy, respectively. Altogether, proteogenomics provides a systematic framework to inform HNSCC biology and treatment.Entities:
Keywords: CDK inhibitor; CPTAC; EGFR mAb; HNSCC; combination immune checkpoint blockade; immune evasion; immunotherapy; predictive biomarker; proteogenomics; proteomics
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Year: 2021 PMID: 33417831 PMCID: PMC7946781 DOI: 10.1016/j.ccell.2020.12.007
Source DB: PubMed Journal: Cancer Cell ISSN: 1535-6108 Impact factor: 31.743