Memory CD4 T cell subset organization in the female reproductive tract is regulated via the menstrual cycle through CCR5 signaling
Swaims-Kohlmeier, A.; Wein, A. N.; Hardnett, F. P.; Sheth, A. N.; Li, Z.-R. T.; Williams, M. E.; Radzio-Basu, J.; Zheng, H.; Dinh, C.; Haddad, L. B.; Collins, E. M.; Lobby, J. L.; Kost, K.; Hayward, S. L.; Ofotokun, I.; Antia, R.; Scharer, C. D.; Lowen, A. C.; Garcia-Lerma, J. G.; Kohlmeier, J.
Show abstract
Despite their importance for immunity against sexually transmitted infections (STIs), the composition of the female reproductive tract (FRT) memory CD4 T cell population in response to changes in the local tissue environment during the menstrual cycle remains poorly defined. Here we show that across humans, non-human primates (NHP), and mice, FRT CD4 T cells comprise distinct subsets corresponding to migratory memory (TMM) and resident memory (TRM) cells. TMM display tissue-itinerant trafficking characteristics, restricted FRT tissue distribution, with distinct transcriptional properties and effector responses to infection. CD4 T cell subset fluctuations synchronized with cycle-driven proinflammatory changes within the local tissue environment and oral administration of a CCR5 antagonist inhibited cycle phase-specific migratory T cell surveillance. This study provides novel insights into the dynamic nature of FRT memory CD4 T cells and identifies the menstrual cycle as a key regulator of memory T cell defense at the site of STI exposure. SummaryThe menstrual cycle regulates memory T cell surveillance.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- CXCR6 promotes dermal CD8+ T cell survival and transition to long-term tissue residence 96%
- Protracted yet coordinated differentiation of long-lived SARS-CoV-2-specific CD8+ T cells during COVID-19 convalescence 96%
- Conserved epigenetic programming and enhanced heme metabolism drive memory B cell reactivation 95%
Similar papers in this journal
- Epstein Barr virus infection induces tissue-resident memory T cells in mucosal lymphoid tissues 96%
- Balance between maternal antiviral response and placental transfer of protection in gestational SARS-CoV-2 infection 95%
- Chikungunya virus infection disrupts lymph node lymphatic endothelial cell composition and function via MARCO 95%
Similar papers in this journal
- Natural killer cell immunosuppressive function requires CXCR3-dependent redistribution within lymphoid tissues 95%
- A20's Linear Ubiquitin Binding Motif Restrains Pathogenic Activation of TH17/22 cells and IL-22 Driven Enteritis 95%
- SARS-CoV2 mRNA-vaccination-induced Immunological Memory in Human Non-Lymphoid and Lymphoid Tissues 95%
Similar papers in this journal
Similar papers in this journal
- IL-15 synergizes with CD40 agonist antibodies to induce durable immunity against bladder cancer 95%
- T Lymphocyte-Specific Deletion of SHP1 and SHP2 Promotes Activation-Induced Cell Death of CD4+ T Cells and Impairs Antitumor Response 95%
- TGF-β broadly modifies rather than specifically suppresses reactivated memory CD8 T cells in a dose-dependent manner 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.