Human genetic variation reveals FCRL3 is a lymphocyte receptor for Yersinia pestis
Rachel M Keener1,2, Sam Shi1, Trisha Dalapati1
1Department of Molecular Genetics and Microbiology, School of Medicine, Duke University, Durham, NC, USA.
Abstract:
Yersinia pestis is the gram-negative bacterium responsible for plague, one of the deadliest and most feared diseases in human history. This bacterium is known to infect phagocytic cells, such as dendritic cells and macrophages, but interactions with non-phagocytic cells of the adaptive immune system are frequently overlooked despite the importance they likely hold for human infection. To discover human genetic determinants of Y. pestis infection, we utilized nearly a thousand genetically diverse lymphoblastoid cell lines in a cellular genome-wide association study method called Hi-HOST (High-throughput Human in-vitrO Susceptibility Testing). We identified a nonsynonymous SNP, rs2282284, in Fc receptor like 3 (FCRL3) associated with bacterial invasion of host cells (p=9×10-8). FCRL3 belongs to the immunoglobulin superfamily and is primarily expressed in lymphocytes. rs2282284 is within a tyrosine-based signaling motif, causing an asparagine-to-serine mutation (N721S) in the most common FCRL3 isoform. Overexpression of FCRL3 facilitated attachment and invasion of non-opsonized Y. pestis. Additionally, FCRL3 colocalized with Y. pestis at sites of cellular attachment, suggesting FCRL3 is a receptor for Y. pestis. These properties were variably conserved across the FCRL family, revealing molecular requirements of attachment and invasion, including an Ig-like C2 domain and a SYK interaction motif. Direct binding was confirmed with purified FCRL5 extracellular domain. Following attachment, invasion of Y. pestis was dependent on SYK and decreased with the N721S mutation. Unexpectedly, this same variant is associated with risk of chronic hepatitis C virus infection in BioBank Japan. Thus, Y. pestis hijacks FCRL proteins, possibly taking advantage of an immune receptor to create a lymphocyte niche during infection.
Insights
Yersinia pestis, the plague bacterium, invades host cells by hijacking Fc receptor-like 3 (FCRL3) proteins. A specific FCRL3 genetic variant (rs2282284) impacts Y. pestis invasion, revealing a novel host-pathogen interaction mechanism.
Area of Science:
- Immunology
- Microbiology
- Genetics
Background:
- Yersinia pestis causes plague, a historically devastating disease.
- Bacterial interactions with non-phagocytic immune cells are crucial but understudied.
- Understanding host genetic factors influencing Y. pestis infection is vital.
Purpose of the Study:
- To identify human genetic determinants of Yersinia pestis infection.
- To investigate the role of Fc receptor-like 3 (FCRL3) in bacterial invasion.
Main Methods:
- Utilized nearly a thousand genetically diverse lymphoblastoid cell lines for cellular genome-wide association study (Hi-HOST).
- Identified single nucleotide polymorphism (SNP) rs2282284 in FCRL3 associated with bacterial invasion.
- Investigated FCRL3 function through overexpression, colocalization studies, and SYK dependency assays.
Main Results:
- A significant association (p=9×10⁻⁸) was found between FCRL3 SNP rs2282284 and Y. pestis invasion.
- Overexpression of FCRL3 facilitated Y. pestis attachment and invasion, suggesting FCRL3 acts as a receptor.
- The N721S mutation in FCRL3 impaired Y. pestis invasion, dependent on SYK signaling.
Conclusions:
- Yersinia pestis hijacks FCRL proteins, likely utilizing them as receptors for entry into host cells.
- The FCRL3 genetic variant rs2282284 influences Y. pestis invasion efficiency.
- This interaction highlights a novel mechanism for Y. pestis pathogenesis, potentially creating a lymphocyte niche.
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