The homozygous CX3CR1-M280 mutation impairs human monocyte survival

Amanda L Collar1, Muthulekha Swamydas1, Morgan O'Hayre2

  • 1Fungal Pathogenesis Section, Laboratory of Clinical Immunology and Microbiology (LCIM), National Institute of Allergy and Infectious Diseases (NIAID) , and.

JCI Insight
|February 9, 2018
PubMed

Insights

The CX3CR1-M280 variant impairs human monocyte survival by disrupting CX3CL1-mediated signaling pathways, potentially impacting immune responses and monocyte counts in homozygous individuals.

Area of Science:

  • Immunology
  • Genetics

Background:

  • Mouse Cx3cr1 signaling enhances monocyte/macrophage survival.
  • Genetic deficiency of Cx3cr1 in mice increases mortality and impairs fungal clearance.
  • The CX3CR1-M280 variant is linked to increased risk and worse outcomes in human systemic candidiasis.

Purpose of the Study:

  • To investigate the impact of the CX3CR1-M280 variant on human monocyte survival.
  • To determine if CX3CR1-M280 impairs CX3CL1-mediated monocyte survival and signaling.

Main Methods:

  • Genotyping of healthy donors for CX3CR1-WT/WT, CX3CR1-WT/M280, and CX3CR1-M280/M280.
  • Assessment of CX3CL1-mediated monocyte survival under serum starvation.
  • Analysis of AKT and ERK signaling pathways in response to CX3CL1.
  • Evaluation of monocyte counts and immune effector functions.

Main Results:

  • CX3CL1 rescued serum starvation-induced cell death in CX3CR1-WT/WT and CX3CR1-WT/M280 monocytes, but not in CX3CR1-M280/M280 monocytes.
  • CX3CL1-induced survival pathways (AKT, ERK) were impaired in CX3CR1-M280/M280 monocytes.
  • CX3CR1-M280/M280 donors exhibited decreased blood monocyte counts.
  • Monocyte CX3CR1 surface expression and effector functions were unaffected by the M280 variant.

Conclusions:

  • Homozygosity for the CX3CR1-M280 polymorphism impairs human monocyte survival.
  • This variant disrupts CX3CL1 signaling via AKT and ERK pathways.
  • CX3CR1-M280 homozygosity may be a population-based genetic factor influencing human monocyte counts and signaling.

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