Sustained mTORC1 activation in activated T cells impairs vaccine responses in older individuals

  • Lin, Xiaorong; 
  • Du, Yanhua; 
  • Kan, Shuo; 
  • Chen, Junjie; 
  • Yin, Yunxue; 
  • ... Kim, Chulwoo; 
  • 외 8명
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5
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SCOPUS

4

초록

T cell aging contributes to the lower vaccine efficacy in older adults, yet the molecular mechanism remains elusive. Here, we show the density of initially responding na & iuml;ve CD4+ T cells is instructive in T follicular helper (TFH) cell fate decisions and declines with age. A lower number of initially responding cells did not affect TFH differentiation at peak responses after immunization but accounted for an increased contraction phase manifesting as a larger loss of CXCR5 expression. Mechanistically, cells activated at a lower initial density had more sustained mammalian target of rapamycin complex 1 (mTORC1) activities that impair CXCR5 maintenance. YAP-dependent regulation of SLC7A5 involved in the cell density-dependent regulation of mTORC1 activities and TFH loss. Old mice fed with a leucine-restricted diet after peak responses showed smaller TFH loss and improved humoral immune responses. Attenuating mTORC1 signaling after peak response is a strategy to boost vaccine responses in older individuals.

키워드

Doublecortin Like Kinase 1; Germinal Center Kinase; Mammalian Target Of Rapamycin Complex 1; Mammalian Target Of Rapamycin Complex 2; Nima Related Kinase 1; Oncogene Protein V Akt; Oncogene Protein V Raf; Polo Like Kinase 1; Serine Threonine Protein Kinase 3; Serine Threonine Protein Kinase Ulk1; Serine/threonine Protein Kinase Wnk1; Mechanistic Target Of Rapamycin Complex 1; Vaccines; Cell Death; Cell Signaling; Immunization; Macroinvertebrates; T-cells; After-peaks; Cd4 T-cells; Cell Aging; Complex 1; Mammalian Target; Molecular Mechanism; Older Adults; Peak Response; Target Of Rapamycin; Vaccine Efficacies; Mammals; Mammalian Target Of Rapamycin Complex 1; Vaccine; Aged; Aging; Animal; Cell Differentiation; Female; Human; Immunology; Lymphocyte Activation; Metabolism; Mouse; Signal Transduction; Aged; Aging; Animals; Cell Differentiation; Female; Humans; Lymphocyte Activation; Mechanistic Target Of Rapamycin Complex 1; Mice; Signal Transduction; Vaccines; FOLLICULAR HELPER-CELL; IMMUNE-RESPONSES; B-CELLS; DIFFERENTIATION; REPERTOIRE; DIVERSITY; SELECTION; MAINTENANCE; METABOLISM; OUTPUT
제목
Sustained mTORC1 activation in activated T cells impairs vaccine responses in older individuals
저자
Lin, Xiaorong; Du, Yanhua; Kan, Shuo; Chen, Junjie; Yin, Yunxue; Li, Linlin; Chen, Jingwen; Jiang, Wenrong; Cao, Wenqiang; Kim, Chulwoo; Chen, Liang; Wang, Shiwen; Goronzy, Jorg J.; Jin, Jun
DOI
10.1126/sciadv.adt4881
발행일
2025-04-18
유형
Article
저널명
Science Advances
권
11
호
16