CD47 prevents Rac-mediated phagocytosis through Vav1 dephosphorylation

Wyatt D Miller1, Abhinava K Mishra2, Connor J Sheedy1

  • 1Interdisciplinary Program in Quantitative Biology, University of California, Santa Barbara, Santa Barbara CA.

Insights

CD47 blocks phagocytosis by inhibiting Rac activation, a key step in target engulfment. This study identifies Vav1 as the critical target in the CD47 signaling pathway, revealing new insights into immune evasion mechanisms.

Area of Science:

  • Immunology
  • Cell Biology
  • Molecular Biology

Background:

  • CD47 is a cell surface protein that prevents phagocytosis by binding to SIRPα on myeloid cells.
  • The downstream signaling pathway of SIRPα, which inhibits phagocytosis, remains incompletely understood.
  • Understanding CD47-SIRPα interactions is crucial for developing cancer immunotherapies.

Purpose of the Study:

  • To investigate the impact of CD47 on the kinetics and mechanisms of phagocytosis.
  • To elucidate the specific molecular targets and signaling pathways involved in CD47-mediated inhibition of phagocytosis.
  • To identify potential therapeutic targets for overcoming CD47-induced immune evasion.

Main Methods:

  • Time-lapse imaging to analyze phagocytosis kinetics.
  • Manipulation of GTPase activity (Rac2, Vav1) to assess their roles in phagocytosis.
  • Western blotting to examine protein phosphorylation (Syk, Vav1) and recruitment to the phagocytic synapse.

Main Results:

  • CD47-expressing targets were phagocytosed via a Rho-dependent 'sinking' mechanism, unlike IgG-opsonized targets primarily using Rac-dependent 'reaching'.
  • Hyperactivation of Rac2 reversed CD47's suppressive effect, indicating CD47 inhibits Rac activation.
  • CD47 specifically inhibited Vav1 phosphorylation, not its recruitment or Syk phosphorylation, and hyperactive Vav1 rendered macrophages insensitive to CD47.

Conclusions:

  • CD47 inhibits phagocytosis by preventing Rac activation, a critical step mediated by Vav1 phosphorylation.
  • Vav1 acts as a key downstream target of the CD47-SIRPα signaling axis.
  • Targeting Vav1 phosphorylation may represent a novel strategy to overcome CD47-mediated immune suppression in cancer therapy.

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