Li Lin-Na, Wu Jie-Man, Zheng Zong-Ji, Li Shu-Xian, Cai Meng-Yi, Zou Meng-Chen
Department of Endocrinology and Metabolism, Nanfang Hospital, Southern Medical University, Guangzhou, Guangdong, China.
Department of Health Management, Nanfang Hospital Zengcheng Campus, Guangzhou, China.
Autoimmunity. 2025 Dec;58(1):2433628. doi: 10.1080/08916934.2024.2433628. Epub 2024 Dec 17.
Graves' ophthalmopathy (GO) obvious manifestation is the imbalance of Th17/Treg. N6-methyladenosine (m6A) methylation is an important regulator of Th17/Treg balance. However, few reports narrate how m6A regulators mediate the role of genes in GO progression. We explored the m6A modification of THBS1 mediated by WTAP, and the mechanism by which THBS1 regulated glycolysis and Th17/Treg balance. A total of 12 peripheral blood (4 GO samples, 4 GH samples, and 4 health samples) were collected to measure the percentage of Th17/Treg in monocytes by flow cytometry. RNA sequencing (RNA-seq) combined with MeRIP sequencing (MeRIP-seq) was used to screen differentially expressed and methylated genes. MeRIP-qPCR was performed to evaluate the m6A abundance of THBS1 after WTAP silencing. Glycolysis of CD4 T cells was reflected by the lactate content and glucose uptake. The number of Th17 cells was increased in GO peripheral blood, whereas the Treg cells decreased. RNA-seq acquired 679 differentially expressed genes (308 up-regulated, and 371 down-regulated) in the CD4 T cells of GO compared to healthy control. MeRIP-seq identified 3277 m6A peaks between the GO group and the healthy control group, corresponding with 2744 genes (1143 hypermethylated and 1601 hypomethylated). Combined analysis of RNA-seq and MeRIP-seq showed 81 hypermethylated and up-regulated genes. Among the six candidate genes in the PI3K-signaling pathway, THBS1 was the most significantly differentially expressed and hypermethylated. THBS1 silencing resulted in decreased lactate content and glucose uptake in CD4 T cells. WTAP was significantly upregulated in CD4 T cells of GO, and WTAP silencing significantly reduced m6A abundance and expression of THBS1. Upregulated and hypermethylated THBS1 mediated by WTAP promoted glycolysis of CD4 T cells, affected Th17/Treg balance, and facilitated GO progression. We provided a novel potential target for GO treatment and revealed the molecular mechanism of WTAP and THBS1 in GO under the m6A perspective.
格雷夫斯眼病(GO)的明显表现是Th17/Treg失衡。N6-甲基腺苷(m6A)甲基化是Th17/Treg平衡的重要调节因子。然而,很少有报道阐述m6A调节因子如何介导基因在GO进展中的作用。我们探究了由WTAP介导的THBS1的m6A修饰,以及THBS1调节糖酵解和Th17/Treg平衡的机制。共收集12份外周血样本(4份GO样本、4份格雷夫斯病(GD)样本和4份健康样本),通过流式细胞术检测单核细胞中Th17/Treg的百分比。采用RNA测序(RNA-seq)联合甲基化RNA免疫沉淀测序(MeRIP-seq)筛选差异表达和甲基化的基因。进行MeRIP-qPCR以评估WTAP沉默后THBS1的m6A丰度。CD4 T细胞的糖酵解通过乳酸含量和葡萄糖摄取来反映。GO外周血中Th17细胞数量增加,而Treg细胞减少。与健康对照相比,RNA-seq在GO的CD4 T细胞中获得679个差异表达基因(308个上调,371个下调)。MeRIP-seq在GO组和健康对照组之间鉴定出3277个m6A峰,对应2744个基因(1143个高甲基化和1601个低甲基化)。RNA-seq和MeRIP-seq的联合分析显示81个高甲基化且上调的基因。在PI3K信号通路的六个候选基因中,THBS1差异表达和高甲基化最为显著。THBS1沉默导致CD4 T细胞中乳酸含量和葡萄糖摄取减少。WTAP在GO的CD4 T细胞中显著上调,WTAP沉默显著降低THBS1的m6A丰度和表达。由WTAP介导的上调和高甲基化的THBS1促进CD4 T细胞的糖酵解,影响Th17/Treg平衡,并促进GO进展。我们为GO治疗提供了一个新的潜在靶点,并从m6A角度揭示了WTAP和THBS1在GO中的分子机制。