Lrp10 suppresses IL7R limiting CD8 T cell homeostatic expansion and anti-tumor immunity

Jamie Russell, Luming Chen, Aijie Liu, Jianhui Wang, Subarna Ghosh, Xue Zhong, Hexin Shi, Bruce Beutler, Evan Nair-Gill

Research output: Contribution to journalArticlepeer-review

2 Scopus citations

Abstract

Signals emanating from the T-cell receptor (TCR), co-stimulatory receptors, and cytokine receptors each influence CD8 T-cell fate. Understanding how these signals respond to homeostatic and microenvironmental cues can reveal new ways to therapeutically direct T-cell function. Through forward genetic screening in mice, we discover that loss-of-function mutations in LDL receptor-related protein 10 (Lrp10) cause naive and central memory CD8 T cells to accumulate in peripheral lymphoid organs. Lrp10 encodes a conserved cell surface protein of unknown immunological function. T-cell activation induces Lrp10 expression, which post-translationally suppresses IL7 receptor (IL7R) levels. Accordingly, Lrp10 deletion enhances T-cell homeostatic expansion through IL7R signaling. Lrp10-deficient mice are also intrinsically resistant to syngeneic tumors. This phenotype depends on dense tumor infiltration of CD8 T cells, which display increased memory cell characteristics, reduced terminal exhaustion, and augmented responses to immune checkpoint inhibition. Here, we present Lrp10 as a new negative regulator of CD8 T-cell homeostasis and a host factor that controls tumor resistance with implications for immunotherapy.

Original languageEnglish (US)
Pages (from-to)3601-3626
Number of pages26
JournalEMBO Reports
Volume25
Issue number8
DOIs
StatePublished - Aug 9 2024

Keywords

  • Anti-tumor Immunity
  • CD8 T Cell
  • Central Memory
  • Homeostatic Expansion
  • IL7R

ASJC Scopus subject areas

  • Biochemistry
  • Molecular Biology
  • Genetics

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