TSC22D2 identified as a candidate susceptibility gene of multi-cancer pedigree using genome-wide linkage analysis and whole-exome sequencing

Author:

Xiao Lan12,Wei Fang12,Liang Fang23,Li Qiao2,Deng Hao3,Tan Shiming3,Chen Shuai4,Xiong Fang12,Guo Can2,Liao Qianjin4,Li Xiayu3,Zhang Wenling2,Wu Minghua2,Zhou Yanhong2,Xiang Bo2,Zhou Ming2,Li Xiaoling2,Xiong Wei2,Zeng Zhaoyang123,Li Guiyuan123

Affiliation:

1. NHC Key Laboratory of Carcinogenesis, Department of Otolaryngology Head and Neck Surgery, Xiangya Hospital, China

2. The Key Laboratory of Carcinogenesis of the Chinese Ministry of Health, Cancer Research Institute, China

3. Hunan Key Laboratory of Nonresolving Inflammation and Cancer, Disease Genome Research Center, The Third Xiangya Hospital, China

4. Hunan Key Laboratory of Translational Radiation Oncology, Hunan Cancer Hospital and The Affiliated Cancer Hospital of Xiangya School of Medicine, Central South University, Changsha, Hunan, China

Abstract

AbstractCancer is a complex disease, which may involve multiple tumor susceptibility genes that mediate the occurrence and development of tumor molecular events. This study aimed to identify new genetic loci using genome-wide linkage analysis and whole-exome sequencing in a rare, large multi-cancer pedigree recently found in China. We performed high-throughput single-nucleotide polymorphism (SNP) array and linkage analyses of 24 core members of this pedigree and found that the disease susceptibility locus in the multi-cancer pedigree was mapped to chromosome 3q24-26. We also used microsatellites to further validate the results of the SNP locus linkage analysis. Furthermore, we sequenced the whole exome of three members in this pedigree and identified a novel mutant of transforming growth factor β stimulated clone 22 domain family, member 2 (TSC22D2, c.-91T-C) cosegregated with the cancer phenotype. This change was at a highly conserved position, and the exome results were validated using linkage analysis. Moreover, we found the histone H4 transcription factor (HINFP) binds to the promoter region of TSC22D2 and may regulate its transcription. In conclusion, our findings are of great significance to the early pathogenesis of tumors and contribute to the search for molecular targets for the early prevention and treatment of tumors.

Funder

Overseas Expertise Introduction Project for Discipline Innovation

National Natural Science Foundation of China

Natural Science Foundation of Hunan Province

Publisher

Oxford University Press (OUP)

Subject

Cancer Research,General Medicine

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