Utilize este identificador para referenciar este registo: http://hdl.handle.net/10400.5/96553
Título: Ferritin heavy chain supports stability and function of the regulatory T cell lineage
Autor: Wu, Qian
Carlos, Ana Rita
Braza, Faouzi
Bergman, Marie-Louise
Kitoko, Jamil Z
Bastos-Amador, Patricia
Cuadrado, Eloy
Martins, Rui
Oliveira, Bruna Sabino
Martins, Vera C
Scicluna, Brendon P
Landry, Jonathan JM
Jung, Ferris E
Ademolue, Temitope W
Peitzsch, Mirko
Almeida-Santos, Jose
Thompson, Jessica
Cardoso, Silvia
Ventura, Pedro
Slot, Manon
Rontogianni, Stamatia
Ribeiro, Vanessa
Domingues, Vital Da Silva
Cabral, Inês A
Weis, Sebastian
Groth, Marco
Ameneiro, Cristina
Fidalgo, Miguel
Wang, Fudi
Demengeot, Jocelyne
Amsen, Derk
Soares, Miguel P
Data: Mar-2024
Editora: EMBO Press
Citação: Wu, Q.*, Carlos, A. R.*, Braza, F.*, Bergman, M.L., Kitoko, J. Z., Bastos-Amador, P., Cuadrado, E., Martins, R., Oliveira, B. S., Martins, V. C., Scicluna, B. P., Landry, J. J., Jung, F. E., Ademolue, T. W., Peitzsch, M., Almeida-Santos, J., Thompson, J., Cardoso, S., Ventura, P., Slot, M., Rontogianni, S., Ribeiro, V., Domingues, V. D. S., Cabral, I. A., Weis, S., Growth, M., Ameneiro, C., Fidalgo, M., Wang, F., Demengeot, J., Amsen, D., Soares, M. P. (2024). Ferritin heavy chain supports stability and function of the regulatory T cell lineage. EMBO J, 43(8), 1445–1483 *These authors contributed equally to this work. https://doi.org/10.1038/s44318-024-00064-x
Resumo: Regulatory T (TREG) cells develop via a program orchestrated by the transcription factor forkhead box protein P3 (FOXP3). Maintenance of the TREG cell lineage relies on sustained FOXP3 transcription via a mechanism involving demethylation of cytosine-phosphate-guanine (CpG)-rich elements at conserved non-coding sequences (CNS) in the FOXP3 locus. This cytosine demethylation is catalyzed by the ten–eleven translocation (TET) family of dioxygenases, and it involves a redox reaction that uses iron (Fe) as an essential cofactor. Here, we establish that human and mouse TREG cells express Fe-regulatory genes, including that encoding ferritin heavy chain (FTH), at relatively high levels compared to conventional T helper cells. We show that FTH expression in TREG cells is essential for immune homeostasis. Mechanistically, FTH supports TET-catalyzed demethylation of CpG-rich sequences CNS1 and 2 in the FOXP3 locus, thereby promoting FOXP3 transcription and TREG cell stability. This process, which is essential for TREG lineage stability and function, limits the severity of autoimmune neuroinflammation and infectious diseases, and favors tumor progression. These findings suggest that the regulation of intracellular iron by FTH is a stable property of TREG cells that supports immune homeostasis and limits the pathological outcomes of immune-mediated inflammation.
Peer review: yes
URI: http://hdl.handle.net/10400.5/96553
DOI: 10.1038/s44318-024-00064-x
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