T cell stemness and dysfunction in tumors are triggered by a common mechanism

  • Vodnala, Suman Kumar
  • Eil, Robert
  • Kishton, Rigel J.
  • Sukumar, Madhusudhanan
  • Yamamoto, Tori N.
  • 외 14명
Citations

WEB OF SCIENCE

479
Citations

SCOPUS

473

초록

A paradox of tumor immunology is that tumor-infiltrating lymphocytes are dysfunctional in situ, yet are capable of stem cell-like behavior including self-renewal, expansion, and multipotency, resulting in the eradication of large metastatic tumors. We find that the overabundance of potassium in the tumor microenvironment underlies this dichotomy, triggering suppression of T cell effector function while preserving stemness. High levels of extracellular potassium constrain T cell effector programs by limiting nutrient uptake, thereby inducing autophagy and reduction of histone acetylation at effector and exhaustion loci, which in turn produces CD8(+) T cells with improved in vivo persistence, multipotency, and tumor clearance. This mechanistic knowledge advances our understanding of T cell dysfunction and may lead to novel approaches that enable the development of enhanced T cell strategies for cancer immunotherapy.

키워드

LINEAGE RELATIONSHIPEXPRESSION ANALYSISACETYL-COENZYMEEFFECTORDIFFERENTIATIONIMMUNOTHERAPYCANCERMODULATIONSURVIVALNECROSIS
제목
T cell stemness and dysfunction in tumors are triggered by a common mechanism
저자
Vodnala, Suman KumarEil, RobertKishton, Rigel J.Sukumar, MadhusudhananYamamoto, Tori N.Ngoc-Han HaLee, Ping-HsienShin, MinHwaPatel, Shashank J.Yu, ZhiyaPalmer, Douglas C.Kruhlak, Michael J.Liu, XiaojingLocasale, Jason W.Huang, JingRoychoudhuri, RahulFinkel, TorenKlebanoff, Christopher A.Restifo, Nicholas P.
DOI
10.1126/science.aau0135
발행일
2019-03-29
유형
Article
저널명
Science
363
6434
페이지
1417 ~ +