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Published on: February 14, 2021
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.
Abstract:
CD47 is expressed by viable cells to protect against phagocytosis. CD47 is recognized by SIRPα, an inhibitory receptor expressed by macrophages and other myeloid cells. Activated SIRPα recruits SHP-1 and SHP-2 phosphatases but the inhibitory signaling cascade downstream of these phosphatases is not clear. In this study, we used time lapse imaging to measure how CD47 impacts the kinetics of phagocytosis. We found that targets with IgG antibodies were primarily phagocytosed through a Rac-based reaching mechanism. Targets also containing CD47 were only phagocytosed through a less frequent Rho-based sinking mechanism. Hyperactivating Rac2 eliminated the suppressive effect of CD47, suggesting that CD47 prevents activation of Rac and reaching phagocytosis. During IgG-mediated phagocytosis, the tyrosine kinase Syk phosphorylates the GEF Vav, which then activates the GTPase Rac to drive F-actin rearrangement and target internalization. CD47 inhibited Vav1 phosphorylation without impacting Vav1 recruitment to the phagocytic synapse or Syk phosphorylation. Macrophages expressing a hyperactive Vav1 were no longer sensitive to CD47. Together this data suggests that Vav1 is a key target of the CD47 signaling pathway.
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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