错误:搜索内容不能为空,请输入英文关键词
错误:关键词超出字数限制,请精简
高级检索

Distinct developmental pathways generate functionally distinct populations of natural killer cells

  • Yi Ding,
  • Marieke Lavaert,
  • Simon Grassmann,
  • Victor I. Band,
  • Liang Chi,
  • Arundhoti Das,
  • Sumit Das,
  • Christelle Harly,
  • Susannah C. Shissler,
  • Justin Malin,
  • Dingkang Peng,
  • Yongge Zhao,
  • Jinfang Zhu,
  • Yasmine Belkaid,
  • Joseph C. Sun,
  • Avinash Bhandoola

摘要

Natural killer (NK) cells function by eliminating virus-infected or tumor cells. Here we identified an NK-lineage-biased progenitor population, referred to as early NK progenitors (ENKPs), which developed into NK cells independently of common precursors for innate lymphoid cells (ILCPs). ENKP-derived NK cells (ENKP_NK cells) and ILCP-derived NK cells (ILCP_NK cells) were transcriptionally different. We devised combinations of surface markers that identified highly enriched ENKP_NK and ILCP_NK cell populations in wild-type mice. Furthermore, Ly49H+ NK cells that responded to mouse cytomegalovirus infection primarily developed from ENKPs, whereas ILCP_NK cells were better IFNγ producers after infection with Salmonella and herpes simplex virus. Human CD56dim and CD56bright NK cells were transcriptionally similar to ENKP_NK cells and ILCP_NK cells, respectively. Our findings establish the existence of two pathways of NK cell development that generate functionally distinct NK cell subsets in mice and further suggest these pathways may be conserved in humans.