The effects of altered DNA damage repair genes on mutational processes and immune cell infiltration in esophageal squamous cell carcinoma

Author:

Yuan Huangbo1,Qing Tao12,Zhu Sibo1,Yang Xiaorong3ORCID,Wu Weicheng1,Xu Kelin4,Chen Hui3,Jiang Yanfeng15,Zhu Chengkai1,Yuan Ziyu5,Zhang Tiejun56,Jin Li15,Suo Chen56ORCID,Lu Ming35ORCID,Chen Xingdong1578ORCID,Ye Weimin59

Affiliation:

1. State Key Laboratory of Genetic Engineering, Human Phenome Institute, and School of Life Sciences Fudan University Shanghai China

2. Breast Medical Oncology, School of Medicine Yale University Connecticut New Haven USA

3. Clinical Epidemiology Unit Qilu Hospital of Shandong University Jinan China

4. Department of Biostatistics, School of Public Health Fudan University Shanghai China

5. Fudan University Taizhou Institute of Health Sciences Taizhou China

6. Department of Epidemiology, School of Public Health Fudan University Shanghai China

7. National Clinical Research Center for Aging and Medicine, Huashan Hospital Fudan University Shanghai China

8. Yiwu Research Institute of Fudan University Yiwu China

9. Department of Medical Epidemiology and Biostatistics Karolinska Institute Stockholm Sweden

Abstract

AbstractBackgroundDefects in DNA damage repair (DDR) pathways lead to genomic instability and oncogenesis. DDR deficiency is prevalent in esophageal squamous cell carcinoma (ESCC), but the effects of DDR alterations on mutational processes and tumor immune microenvironment in ECSS remain unclear.MethodsWhole‐exome and transcriptome sequencing data of 45 ESCC samples from Taizhou, China, were used to identify genomic variations, gene expression modulation in DDR pathways, and the abundance of tumor‐infiltrating immune cells. Ninety‐six ESCC cases from The Cancer Genome Atlas (TCGA) project were used for validation.ResultsA total of 57.8% (26/45) of the cases in the Taizhou data and 70.8% (68/96) of the cases in the TCGA data carried at least one functional impact DDR mutation. Mutations in the DDR pathways were associated with a high tumor mutation burden. Several DDR deficiency‐related mutational signatures were discovered and were associated with immune cell infiltration, including T cells, monocytes, dendritic cells, and mast cells. The expression levels of two DDR genes, HFM1 and NEIL1, were downregulated in ESCC tumor tissues and had an independent effect on the infiltration of mast cells. In the Taizhou data, increased expression of HFM1 was associated with a poor prognosis, and the increased expression of NEIL1 was associated with a good outcome, but no reproducible correlation was observed in the TCGA data.ConclusionThis research demonstrated that DDR alterations could impact mutational processes and immune cell infiltration in ESCC. The suppression of HFM1 and NEIL1 could play a crucial role in ESCC progression and may also serve as prognostic markers.

Funder

National Natural Science Foundation of China

National Key Research and Development Program of China

Publisher

Wiley

Subject

Cancer Research,Radiology, Nuclear Medicine and imaging,Oncology

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