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Updated: Feb 4, 2026

Quantifying Human Norovirus Virus-like Particles Binding to Commensal Bacteria Using Flow Cytometry
Published on: April 29, 2020
Within-host evolution of virus variants during chronic infection with novel GII.P26-GII.26 norovirus
Corinna Pietsch1, Nora Ennuschat1, Sabine Härtel1
1Institute of Virology, Leipzig University, Leipzig, Germany.
Background:
Noroviruses are a leading cause of acute gastroenteritis in all age groups. They generally cause a rapidly self-limiting illness. However, chronic norovirus diarrheal disease occurs in immunocompromised individuals, and is accompanied by persistent shedding of infectious norovirus in stool.
Objectives:
The study aims to characterize a novel GII.P26-GII.26 norovirus strain. Furthermore, it analyses viral mutations arising during chronic infection of an immunocompromised host.
Study Design:
Over the course of more than three years, stool samples were obtained from an immunocompromised patient and screened for the presence of norovirus RNA by real-time PCR and norovirus antigen by immunoassay. Viral population kinetics was analyzed by conventional and high-throughput-sequencing.
Results:
Real-time PCR yielded high amounts of norovirus RNA in the stool, but antigen immunoassays failed to detect the virus. The near complete norovirus genome was assigned as novel GII.P26-GII.26 genotype. Conventional as well as high-throughput sequencing pointed to a heterogeneous viral population with low rates of non-synonymous substitutions. Within-host evolution was enhanced in non-structural protein p22 and the N-terminal arm of the capsid protein VP1 but reduced in the viral polymerase RdRp. Intermittent non-synonymous substitutions in the protruding domain of the VP1 reverted fully over time.
Conclusions:
Confirmation of novel GII.P26-GII.26 norovirus genotypes provides insight into norovirus genetic diversity. The study further illustrates norovirus infection as an important differential diagnosis of recurrent persistent diarrhea in immunocompromised patients. The provided data on within-host evolution contribute to the insight of the mechanisms of viral persistence and pathogenesis in chronic norovirus infections.
Insights
A novel norovirus strain (GII.P26-GII.26) was identified in an immunocompromised patient with chronic diarrhea. Analysis revealed viral mutations during persistent infection, offering insights into norovirus evolution and pathogenesis.
Area of Science:
- * Virology
- * Gastroenterology
- * Immunology
Background:
- * Noroviruses are a primary cause of acute gastroenteritis across all age groups, typically resulting in self-limiting illness.
- * Chronic norovirus infection with persistent viral shedding occurs in immunocompromised individuals, leading to diarrheal disease.
Purpose of the Study:
- * To characterize a novel GII.P26-GII.26 norovirus strain.
- * To analyze viral mutations that emerge during chronic infection in an immunocompromised host.
Main Methods:
- * Longitudinal stool sample analysis from an immunocompromised patient over three years.
- * Norovirus RNA detection via real-time PCR and antigen detection via immunoassay.
- * Viral population kinetics studied using conventional and high-throughput sequencing.
Main Results:
- * High norovirus RNA levels detected by PCR, but antigen assays were negative.
- * A novel GII.P26-GII.26 norovirus genotype was identified.
- * Sequencing revealed a heterogeneous viral population with low non-synonymous substitutions, with enhanced evolution in specific viral proteins (p22, VP1 N-terminal arm) and reduced evolution in RdRp.
Conclusions:
- * Identification of the novel GII.P26-GII.26 norovirus genotype expands understanding of norovirus genetic diversity.
- * Norovirus infection should be considered in the differential diagnosis of recurrent, persistent diarrhea in immunocompromised patients.
- * Data on within-host evolution elucidate mechanisms of viral persistence and pathogenesis in chronic norovirus infections.
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