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Updated: Sep 23, 2025

Quantifying Human Norovirus Virus-like Particles Binding to Commensal Bacteria Using Flow Cytometry
Published on: April 29, 2020
Epidemiological Impact of GII.17 Human Noroviruses Associated With Attachment to Enterocytes
Marie Estienney1,2, Georges Tarris3,4, Nicole Abou-Hamad1,2,5
1National Reference Centre for Gastroenteritis Viruses, Laboratory of Virology, University Hospital of Dijon, Dijon, France.
Abstract:
For the last 30 years, molecular surveys have shown that human norovirus (HuNoV), predominantly the GII.4 genotype, is one of the main causative agents of gastroenteritis. However, epidemiological surveys have revealed the worldwide emergence of GII.17 HuNoVs. Genetic analysis confirmed that GII.17 strains are distributed into three variants (i.e., Kawasaki 308, Kawasaki 323, and CS-E1). Here, virus-like particles (VLPs) were baculovirus-expressed from these variants to study putative interactions with HBGA. Qualitative analysis of the HBGA binding profile of each variant showed that the most recent and predominant GII.17 variant, Kawasaki 308, possesses a larger binding spectrum. The retrospective study of GII.17 strains documented before the emergence of the dominant Kawasaki 308 variant showed that the emergence of a new GII.17 variant could be related to an increased binding capacity toward HBGA. The use of duodenal histological sections confirmed that recognition of enterocytes involved HBGA for the three GII.17 variants. Finally, we observed that the relative affinity of recent GII.17 VLPs for HBGA remains lower than that of the GII.4-2012 variant. These observations suggest a model whereby a combination of virological factors, such as polymerase fidelity and increased affinity for HBGA, and immunological factors was responsible for the incomplete and non-persistent replacement of GII.4 by new GII.17 variants.
Insights
Human norovirus (HuNoV) GII.17 variants, particularly Kawasaki 308, show broader binding to human histo-blood group antigens (HBGAs). This increased binding capacity may explain their emergence, though GII.4 strains retain higher affinity.
Area of Science:
- Virology
- Gastroenterology
- Immunology
Background:
- Human norovirus (HuNoV), especially GII.4, is a primary cause of gastroenteritis.
- Emergence of GII.17 HuNoVs globally, with three variants identified: Kawasaki 308, Kawasaki 323, and CS-E1.
Purpose of the Study:
- Investigate interactions between GII.17 HuNoV variants and human histo-blood group antigens (HBGAs).
- Determine the binding profiles and affinities of GII.17 variants compared to GII.4.
Main Methods:
- Baculovirus expression of GII.17 virus-like particles (VLPs) for three variants.
- Qualitative analysis of HBGA binding profiles for each variant.
- Retrospective study of GII.17 strains and duodenal histological sections to confirm HBGA-enterocyte recognition.
Main Results:
- The GII.17 Kawasaki 308 variant exhibited a broader HBGA binding spectrum.
- Increased HBGA binding capacity is associated with the emergence of new GII.17 variants.
- GII.17 variants utilize HBGAs for enterocyte recognition, but GII.4-2012 shows higher relative affinity.
Conclusions:
- Emergence of GII.17 variants may be linked to enhanced HBGA binding.
- Incomplete GII.4 replacement by GII.17 suggests a complex interplay of virological (e.g., polymerase fidelity, HBGA affinity) and immunological factors.
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