CD150-dependent hematopoietic stem cell sensing of Brucella instructs myeloid commitment

Research output: Contribution to journalResearch articleContributedpeer-review

Contributors

  • Lisiena Hysenaj - , Aix-Marseille Université (Author)
  • Bérengère de Laval - , Aix-Marseille Université (Author)
  • Vilma Arce-Gorvel - , Aix-Marseille Université (Author)
  • Mile Bosilkovski - , University Clinic for Infectious Diseases and Febrile Conditions (Author)
  • Gabriela González-Espinoza - , Aix-Marseille Université (Author)
  • Guilhaume Debroas - , Aix-Marseille Université (Author)
  • Michael H Sieweke - , Center for Regenerative Therapies Dresden, Chair of Stem Cell Research with focus on cell-based approaches to regenerative biomedicine, Aix-Marseille Université (Author)
  • Sandrine Sarrazin - , Aix-Marseille Université (Author)
  • Jean-Pierre Gorvel - , Aix-Marseille Université (Author)

Abstract

So far, hematopoietic stem cells (HSC) are considered the source of mature immune cells, the latter being the only ones capable of mounting an immune response. Recent evidence shows HSC can also directly sense cytokines released upon infection/inflammation and pathogen-associated molecular pattern interaction while keeping a long-term memory of previously encountered signals. Direct sensing of danger signals by HSC induces early myeloid commitment, increases myeloid effector cell numbers, and contributes to an efficient immune response. Here, by using specific genetic tools on both the host and pathogen sides, we show that HSC can directly sense B. abortus pathogenic bacteria within the bone marrow via the interaction of the cell surface protein CD150 with the bacterial outer membrane protein Omp25, inducing efficient functional commitment of HSC to the myeloid lineage. This is the first demonstration of direct recognition of a live pathogen by HSC via CD150, which attests to a very early contribution of HSC to immune response.

Details

Original languageEnglish
Article numbere20210567
Number of pages15
JournalThe Journal of experimental medicine
Volume220 (2023)
Issue number7
Publication statusPublished - 3 Jul 2023
Peer-reviewedYes

External IDs

PubMedCentral PMC10114919
Scopus 85152615985

Keywords

Keywords

  • Brucella, Hematopoietic Stem Cells/metabolism, Bone Marrow, Bone Marrow Cells, Membrane Proteins/metabolism, Cell Differentiation

Library keywords