Ir directamente a la navegación principal Ir directamente a la búsqueda Ir directamente al contenido principal

Paracrine FGF21 dynamically modulates mTOR signaling to regulate thymus function across the lifespan

  • Sarah A. Wedemeyer
  • , Nicholas E. Jones
  • , Iwan G.A. Raza
  • , Freedom M. Green
  • , Yangming Xiao
  • , Manpreet K. Semwal
  • , Aaron K. Garza
  • , Kahealani S. Archuleta
  • , Kymberly L. Wimberly
  • , Thomas Venables
  • , Georg A. Holländer
  • , Ann V. Griffith

Producción científica: Articlerevisión exhaustiva

Resumen

Consequences of age-associated thymic atrophy include declining T-cell responsiveness to pathogens and vaccines and diminished T-cell self-tolerance. Cortical thymic epithelial cells (cTECs) are primary targets of thymic aging, and recent studies suggested that their maintenance requires mTOR signaling downstream of medullary TEC (mTEC)-derived growth factors. Here, to test this hypothesis, we generated a knock-in mouse model in which FGF21 and mCherry are expressed by most mTECs. We find that mTEC-derived FGF21 promotes temporally distinct patterns of mTORC1 and mTORC2 signaling in cTECs, promotes thymus and individual cTEC growth and maintenance, increases T-cell responsiveness to viral infection, and diminishes indicators of peripheral autoimmunity in older mice. The effects of FGF21 overexpression on thymus size and mTOR signaling were abrogated by treatment with the mTOR inhibitor rapamycin. These results reveal a mechanism by which paracrine FGF21 signaling regulates thymus size and function throughout the lifespan, as well as potential therapeutic targets for improving T-cell function and tolerance in aging.

Idioma originalEnglish (US)
Número de artículoe13624
Páginas (desde-hasta)588-606
Número de páginas19
PublicaciónNature Aging
Volumen5
N.º4
DOI
EstadoPublished - abr 2025

ASJC Scopus subject areas

  • Neuroscience (miscellaneous)
  • Aging
  • Geriatrics and Gerontology

Huella

Profundice en los temas de investigación de 'Paracrine FGF21 dynamically modulates mTOR signaling to regulate thymus function across the lifespan'. En conjunto forman una huella única.

Citar esto