McTaggart Tegan, Lim Jing Xuan, Smith Katie J, Heaney Bronagh, McDonald David, Hulme Gillian, Hussain Rafiqul, Coxhead Jonathan, Degnan Abbie Ea, Isaacs John, Pratt Arthur, Amarnath Shoba
Biosciences Institute, Newcastle University, Newcastle Upon Tyne, UK; NIHR, Biomedical Research Centre, Newcastle Upon Tyne, UK.
Biosciences Institute, Newcastle University, Newcastle Upon Tyne, UK.
J Biol Chem. 2025 Jan;301(1):108059. doi: 10.1016/j.jbc.2024.108059. Epub 2024 Dec 9.
Regulatory T cells (Tregs) are immune regulatory T cells that are vital for controlling inflammation. The role of Tregs in inflammatory diseases namely psoriatic arthritis (PsA) is still poorly understood. The underlying reason being a lack of robust unbiased analysis to test the immune regulatory phenotype of human Tregs. Here, we propose that checkpoint receptors can identify functional Tregs in PsA. Using unbiased BD Rhapsody single-cell analysis, we have analyzed the expression pattern of checkpoint receptors in Tregs and found that PsA Tregs are enriched in the expression of CTLA4, TIGIT, PD-1, and GITR while TIM3 was downregulated. Furthermore, PD-1 Tregs in PsA had an increased type 1 phenotype and expressed the protease asparaginyl endopeptidase. By harnessing the PD-1 signaling pathway and inhibiting asparaginyl endopeptidase, PsA Treg function was significantly enhanced in in vitro suppressor assays. Next, we interrogated the cell interaction pathways of Tregs in PsA and found a diminished crosstalk with circulating osteoclast precursors through the CD244-CD48 coreceptor pathways. Therapeutically, PsA Treg function could be enhanced by modulating PD-1 and osteoclast interactions. Our study suggests that unconventional immune cell crosstalk with Tregs is severely diminished in PsA.
调节性T细胞(Tregs)是对控制炎症至关重要的免疫调节性T细胞。Tregs在炎性疾病即银屑病关节炎(PsA)中的作用仍了解甚少。根本原因是缺乏可靠的无偏分析来检测人类Tregs的免疫调节表型。在此,我们提出检查点受体可识别PsA中的功能性Tregs。利用无偏的BD Rhapsody单细胞分析,我们分析了Tregs中检查点受体的表达模式,发现PsA Tregs中CTLA4、TIGIT、PD-1和GITR的表达富集,而TIM3表达下调。此外,PsA中的PD-1 Tregs具有增强的1型表型并表达蛋白酶天冬酰胺内肽酶。通过利用PD-1信号通路并抑制天冬酰胺内肽酶,在体外抑制试验中PsA Treg功能显著增强。接下来,我们探究了PsA中Tregs的细胞相互作用途径,发现通过CD244-CD48共受体途径与循环破骨细胞前体的串扰减少。在治疗方面,通过调节PD-1和破骨细胞相互作用可增强PsA Treg功能。我们的研究表明,在PsA中非常规免疫细胞与Tregs的串扰严重减少。