Transcriptome Analysis and Emerging Driver Identification of CD8+ T Cells in Patients with Vitiligo

Author:

Deng Qiancheng1ORCID,Wei Jingchao2ORCID,Zou Puyu1,Xiao Yangfan3,Zeng Zhuotong1,Shi Yaqian1,Zhan Yi1,Zhang Huiming1,Tang Bingsi1,Zeng Qinghai4,Xiao Rong1ORCID

Affiliation:

1. Department of Dermatology, Second Xiangya Hospital, Central South University, Hunan Key Laboratory of Medical Epigenetics, Changsha, China

2. Department of Urology, Third Xiangya Hospital of Central South University, Changsha, China

3. Department of Anesthesiology, Second Xiangya Hospital, Central South University, Changsha, China

4. Department of Dermatology, Third Xiangya Hospital of Central South University, Changsha, China

Abstract

Activated CD8+ T cells play important roles in the pathogenesis of vitiligo. However, driving factors about the activation and migration of CD8+ T cells remain obscure. In this study, we aim to identify differentially expressed genes (DEGs) and uncover potential factors that drive the disease in melanocyte-specific CD8+ T cells in vitiligo. A total of 1147 DEGs were found through transcriptome sequencing in CD8+ T cells from lesional skin of vitiligo patients and normal controls. Based on KEGG pathway enrichment analysis and PPI, 16 upregulated and 23 downregulated genes were identified. Ultimately, 3 genes were figured out after RT-qPCR verification. The mRNA and protein expression levels of PIK3CB, HIF-1α, and F2RL1 were all elevated in CD8+ T cells from peripheral blood in vitiligo. HIF-1α and PIK3CB were significantly increased in lesional skin of vitiligo. Two CpG sites of the HIF-1α promoter were hypomethylated in vitiligo CD8+ T cells. In conclusion, HIF-1α, F2RL1, and PIK3CB may act as novel drivers for vitiligo, which are all closely associated with reactive oxygen species and possibly contribute to the activation and/or migration of melanocyte-specific CD8+ T cells in vitiligo. In addition, we uncovered a potential role for DNA hypomethylation of HIF-1α in CD8+ T cells of vitiligo.

Funder

National Natural Science Foundation of China

Publisher

Hindawi Limited

Subject

Cell Biology,Aging,General Medicine,Biochemistry

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