An Immunogenomic Investigation of Oral Cavity Squamous Cell Carcinoma in Patients Aged 45 Years and Younger
LARYNGOSCOPE
Authors: Maroun, Christopher A.; Zhu, Gangcai; Fakhry, Carole; Gourin, Christine G.; Seiwert, Tanguy Y.; Vosler, Peter S.; Tan, Marietta; Koch, Wayne; Eisele, David W.; Pardoll, Drew M.; Mandal, Rajarsi
Abstract
Objectives/Hypothesis To investigate differences in the immunogenomic landscape among young patients presenting with oral cavity squamous cell carcinoma (OCSCC). Study Design Retrospective database review. Methods Normalized messenger mRNA expression data were downloaded from The Cancer Genome Atlas (TCGA) database. OCSCC patients were categorized into young and older age groups with a cutoff of 45 years. Human papillomavirus-positive tumors were excluded. Cell fractions, marker expression, and mutational load were compared between age groups using the Wilcoxon rank sum test. Adjustment for multiple comparisons was performed using the Benjamini-Hochberg method, with a false discovery rate of 0.05. Results Two hundred forty-five OCSCC tumors were included; 21 (8.6%) were young (37.1 +/- 7.5 years) and 224 (91.4%) were older (64.5 +/- 10.3 years). There was no significant difference between groups in the fraction of B and T lymphocytes, macrophages, monocytes, natural killers, and dendritic cells. Cytolytic activity score was decreased in young patients (8.33 vs. 18.9, P = .023). Additionally, young patients had significantly lower expression of immunomodulatory markers of immune activation, including PD-1 (PDCD1, P = .003), CTLA4 (P = .025), TIGIT (P = .002), GITR (TNFRSF18, P = .005), OX40 (TNFRSF4, P = .009), LAG-3 (P < .001), and TIM-3 (HAVCR2, P = .002). Young patients had a significantly lower number of single nucleotide variant-derived neoantigens (26.2 vs. 60.6, P < .001). Conclusions OCSCC patients aged 45 years and younger appear to have an attenuated immune response that may be related to a lower frequency of immunogenic mutations. This may contribute to the pathogenesis of these tumors, and ultimately help inform personalized immune-based therapeutic strategies for young patients with OCSCC. Level of Evidence NA Laryngoscope, 2020
Association of Interacting Genes in the Toll-Like Receptor Signaling Pathway and the Antibody Response to Pertussis Vaccination
PLOS ONE
Authors: Kimman, Tjeerd G.; Banus, Sander; Reijmerink, Naomi; Reimerink, Johan; Stelma, Foekje F.; Koppelman, Gerard H.; Thijs, Carel; Postma, Dirkje S.; Kerkhof, Marjan
Abstract
Background: Activation of the Toll-like receptor (TLR) signaling pathway through TLR4 may be important in the induction of protective immunity against Bordetella pertussis with TLR4-mediated activation of dendritic and B cells, induction of cytokine expression, and reversal of tolerance as crucial steps. We examined whether single nucleotide polymorphisms (SNPs) in genes of the TLR4 pathway and their interaction are associated with the response to whole-cell vaccine (WCV) pertussis vaccination in 490 one-year-old children. Methodology/Principal Findings: We analyzed associations of 75 haplotype-tagging SNPs in genes in the TLR4 signaling pathway with pertussis toxin (PT)-IgG titers. We found significant associations between the PT-IgG titer and SNPs in CD14, TLR4, TOLLIP, TIRAP, IRAK3, IRAK4, TICAM1, and TNFRSF4 in one or more of the analyses. The strongest evidence for association was found for two SNPs (rs5744034 and rs5743894) in TOLLIP that were almost completely in linkage disequilibrium, provided statistically significant associations in all tests with the lowest p-values, and displayed a dominant mode of inheritance. However, none of these single gene associations would withstand correction for multiple testing. In addition, Multifactor Dimensionality Reduction Analysis, an approach that does not need correction for multiple testing, showed significant and strong two and three locus interactions between SNPs in TOLLIP (rs4963060), TLR4 (rs6478317) and IRAK1 (rs1059703). Conclusions/Significance: We have identified significant interactions between genes in the TLR pathway in the induction of vaccine-induced immunity. These interactions underline that these genes are functionally related and together form a true biological relationship in a protein-protein interaction network. Practically all our findings may be explained by genetic variation in directly or indirectly interacting proteins at the extra-and intracytoplasmic sites of the cell membrane of antigen-presenting cells, B cells, or both. Fine tuning of interacting proteins in the TLR pathway appears important for the induction of an optimal vaccine response.