Direct TLR2 Signaling Through mTOR and TBK1 Induces C/EBPβ and IRF7-Dependent Macrophage Differentiation in

Cristina Bono1, Paula Guerrero1, Ana Erades1

  • 1Departamento de Microbiología y Ecología, Facultad de Ciencias Biológicas and Instituto de Biotecnología y Biomedicina (BIOTECMED), Universitat de València, Burjassot, Spain.

Insights

Hematopoietic stem cells directly sense pathogens via TLR2 signaling, initiating myeloid development. This process involves MyD88-dependent pathways and key transcription factors for a rapid immune response.

Area of Science:

  • Immunology
  • Cell Biology
  • Hematopoiesis

Background:

  • Infection triggers hematopoiesis to boost myeloid cell production.
  • Hematopoietic stem and progenitor cells (HSPCs) may sense pathogens directly or indirectly via cytokines.

Purpose of the Study:

  • To investigate the direct mechanisms of TLR2 signaling in HSPC-mediated myeloid differentiation.
  • To elucidate the signaling pathways and transcription factors involved in direct myelopoiesis.

Main Methods:

  • Utilized an in vitro murine HSPC model.
  • Stimulated HSPCs with the TLR2 ligand Pam3CSK4.
  • Analyzed MyD88-dependent signaling, transcription factor activation (PU.1, C/EBPβ, IRF7), and cytokine production (IL-6).

Main Results:

  • TLR2 stimulation directly promotes myelopoiesis in HSPCs via MyD88-dependent signaling.
  • A direct differentiation program involves PU.1, C/EBPβ, and IRF7 activation, driven by TBK1 and PI3K/mTOR.
  • TLR2 signaling also induces IL-6 production, contributing to indirect myeloid differentiation.

Conclusions:

  • Identified direct signaling pathways (MyD88, TBK1, PI3K/mTOR) and transcription factors (PU.1, C/EBPβ, IRF7) in TLR2-mediated macrophage development from HSPCs.
  • Demonstrated that direct TLR2 signaling is a critical mechanism for rapid immune responses during infection.

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