头颈部癌
头颈部鳞状细胞癌
医学
免疫疗法
突变
肿瘤科
队列
生物标志物
转录组
内科学
肿瘤微环境
基因
癌症
癌症研究
生物
遗传学
基因表达
作者
Haotian Cao,Tianjun Lan,Shijia Kuang,Liansheng Wang,Jintao Li,Qunxin Li,Yanyan Li,Qiuping Xu,Qian Chen,Ren Shuwei,Chunhong Lan,Nengtai Ouyang,Jianwei Liao,Yongsheng Huang,Jinsong Li
标识
DOI:10.1016/j.drup.2024.101095
摘要
Response to immunotherapy is the main challenge of head and neck squamous cancer (HNSCC) treatment. Previous studies have indicated that tumor mutational burden (TMB) is associated with poor prognosis, but it is not always a precise index. Hence, investigating specific genetic mutations and tumor microenvironmentI(TME) changes in TMB-high patients is essential for precision therapy of HNC. A total of 33 HNSCC patients were enrolled in this study. We calculated the TMB score based on next-generation sequencing (NGS) sequencing and grouped these patients based on TMB score. Then, we examined the immune microenvironment of HNSCC using assessments of the bulk transcriptome and the single-cell RNA sequence (scRNA-seq) focusing on the molecular nature of TMB and mutations in HNSCC from our cohort. The association of the mutation pattern and TMB was analyzed in The Cancer Genome Atlas (TCGA) and validated by our cohort. 33 HNSCC patients were divided into three groups (TMB-low, -medium, and -high) based on TMB score. In the result of 520-gene panel sequencing data, we found that FAT1 and LRP1B mutations were highly prevalent in TMB-high patients. FAT1 mutations are associated with resistance to systemic therapy in HNC patients. This involves many metabolism-related pathways like RERE, AIRE, HOMER1, etc. In the scRNA-seq data, regulatory T cells (Tregs), monocytes, and DCs were found mainly enriched in TMB-high samples. Our analysis unraveled the FAT1 gene as an assistant predictor when we use TMB as a biomarker of drug resistance in HNSCC. Tregs, monocytes, and dendritic cells (DCs) were found mainly enriched in TMB-high samples.
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