Exosome mimicry by a HAVCR1-NPC1 pathway of endosomal fusion mediates hepatitis A virus infection
NATURE MICROBIOLOGY
Authors: Costafreda, Maria Isabel; Abbasi, Abdolrahim; Lu, Hsinyi; Kaplan, Gerardo
Abstract
Cell-to-cell communication by exosomes controls normal and pathogenic processes(1,2). Viruses can spread in exosomes and thereby avoid immune recognition(3). While biogenesis, binding and uptake of exosomes are well characterized(4,5), delivery of exosome cargo into the cytoplasm is poorly understood(3). We report that the phosphatidylserine receptor HAVCR1 (refs.(6,7)) and the cholesterol transporter NPC1 (ref.(8)) participate in cargo delivery from exosomes of hepatitis A virus (HAV)-infected cells (exo-HAV) by clathrin-mediated endocytosis. Using CRISPR-Cas9 knockout technology, we show that these two lipid receptors, which interact in the late endosome(9), are necessary for the membrane fusion and delivery of RNA from exo-HAV into the cytoplasm. The HAVCR1-NPC1 pathway, which Ebola virus exploits to infect cells(9), mediates HAV infection by exo-HAV, which indicates that viral infection via this exosome mimicry mechanism does not require an envelope glycoprotein. The capsid-free viral RNA in the exosome lumen, but not the endosomal uncoating of HAV particles contained in the exosomes, is mainly responsible for exo-HAV infectivity as assessed by methylene blue inactivation of non-encapsidated RNA. In contrast to exo-HAV, infectivity of HAV particles is pH-independent and requires HAVCR1 or another as yet unidentified receptor(s) but not NPC1. Our findings show that envelope-glycoprotein-independent fusion mechanisms are shared by exosomes and viruses, and call for a reassessment of the role of envelope glycoproteins in infection. Hepatitis A virus infection by exosome mimicry is mediated by an envelope-glycoprotein-independent pathway of endosomal fusion.
Identification of HAVCR1 gene haplotypes associated with mRNA expression levels and susceptibility to autoimmune diseases
HUMAN GENETICS
Authors: Raul Garcia-Lozano, Jose; Abad, Cristina; Escalera, Ana; Torres, Belen; Fernandez, Olga; Garcia, Alicia; Sanchez-Roman, Julio; Sabio, Jose-Mario; Ortego-Centeno, Norberto; Raya-Alvarez, Enrique; Nunez-Roldan, Antonio; Martin, Javier; Francisca Gonzalez-Escribano, Maria
Abstract
Human HAVCR1 gene maps on 5q33.2, a region linked with susceptibility to allergic and autoimmune diseases. The aims of the present study were to define the haplotypes of HAVCR1 gene taking into account both HapMap Project SNP haplotypes and exon 4 variants, to investigate a possible relationship between these haplotypes and mRNA expression levels, and to assess whether HAVCR1 gene is involved in susceptibility to rheumatoid arthritis (RA) and systemic lupus erythematosus (SLE). Genotyping of three ins/del variants in the exon 4 was performed by fragment length analysis. Five tag SNPs genotypes and mRNA levels were determined using TaqMan assays. We defined four major haplotypes in our population: the two major haplotypes (named haplotypes A and B) bear both the 5383_5397del variant and the two most common SNP sets found in the CEU population. Quantification analysis revealed that genotype B/B had the highest median of mRNA expression levels (vs. BX + XX, p < 0.0001). Additionally, frequency of the genotype BB was significantly higher in RA patients than in controls (12.3 vs. 5.9% in controls, p = 0.0046, p (c) = 0.014, OR = 2.23, 95% CI 1.23-4.10). Our results support a relationship between HAVCR1 haplotypes and mRNA expression levels, and suggest an association of this gene with autoimmune diseases.