Oligoclonal CD4 + CXCR5 + T cells with a cytotoxic phenotype appear in tonsils and blood.
Chunguang LiangSilvia SpoerlYin XiaoKatharina M HabenichtSigrun S HaeuslIsabel SandnerJulia WinklerNicholas StriederRüdiger EderHanna StanewskyChristoph AlexiouDiana DudziakAndreas RosenwaldMatthias EdingerMichael RehliPetra HoffmannThomas H WinklerFriederike Berberich-SiebeltPublished in: Communications biology (2024)
In clinical situations, peripheral blood accessible CD3 + CD4 + CXCR5 + T-follicular helper (T FH ) cells may have to serve as a surrogate indicator for dysregulated germinal center responses in tissues. To determine the heterogeneity of T FH cells in peripheral blood versus tonsils, CD3 + CD4 + CD45RA - CXCR5 + cells of both origins were sorted. Transcriptomes, TCR repertoires and cell-surface protein expression were analysed by single-cell RNA sequencing, flow cytometry and immunohistochemistry. Reassuringly, all blood-circulating CD3 + CD4 + CXCR5 + T-cell subpopulations also appear in tonsils, there with some supplementary T FH characteristics, while peripheral blood-derived T FH cells display markers of proliferation and migration. Three further subsets of T FH cells, however, with bona fide T-follicular gene expression patterns, are exclusively found in tonsils. One additional, distinct and oligoclonal CD4 + CXCR5 + subpopulation presents pronounced cytotoxic properties. Those 'killer T FH (T FK ) cells' can be discovered in peripheral blood as well as among tonsillar cells but are located predominantly outside of germinal centers. They appear terminally differentiated and can be distinguished from all other T FH subsets by expression of NKG7 (TIA-1), granzymes, perforin, CCL5, CCR5, EOMES, CRTAM and CX3CR1. All in all, this study provides data for detailed CD4 + CXCR5 + T-cell assessment of clinically available blood samples and extrapolation possibilities to their tonsil counterparts.
Keyphrases
- peripheral blood
- induced apoptosis
- cell cycle arrest
- gene expression
- single cell
- endoplasmic reticulum stress
- cell death
- dna methylation
- regulatory t cells
- oxidative stress
- flow cytometry
- poor prognosis
- cell proliferation
- deep learning
- high throughput
- immune response
- dendritic cells
- big data
- data analysis
- idiopathic pulmonary fibrosis
- disease activity
- interstitial lung disease