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Updated: Feb 14, 2026

Isolation, Transfection, and Culture of Primary Human Monocytes
Published on: December 16, 2019
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.
Abstract:
Several reports have demonstrated that mouse Cx3cr1 signaling promotes monocyte/macrophage survival. In agreement, we previously found that, in a mouse model of systemic candidiasis, genetic deficiency of Cx3cr1 resulted in increased mortality and impaired tissue fungal clearance associated with decreased macrophage survival. We translated this finding by showing that the dysfunctional CX3CR1 variant CX3CR1-M280 was associated with increased risk and worse outcome of human systemic candidiasis. However, the impact of this mutation on human monocyte/macrophage survival is poorly understood. Herein, we hypothesized that CX3CR1-M280 impairs human monocyte survival. We identified WT (CX3CR1-WT/WT), CX3CR1-WT/M280 heterozygous, and CX3CR1-M280/M280 homozygous healthy donors of European descent, and we show that CX3CL1 rescues serum starvation-induced cell death in CX3CR1-WT/WT and CX3CR1-WT/M280 but not in CX3CR1-M280/M280 monocytes. CX3CL1-induced survival of CX3CR1-WT/WT monocytes is mediated via AKT and ERK activation, which are both impaired in CX3CR1-M280/M280 monocytes, associated with decreased blood monocyte counts in CX3CR1-M280/M280 donors at steady state. Instead, CX3CR1-M280/M280 does not affect monocyte CX3CR1 surface expression or innate immune effector functions. Together, we show that homozygocity of the M280 polymorphism in CX3CR1 is a potentially novel population-based genetic factor that influences human monocyte signaling.
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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