Lewis histo-blood group α1,3/α1,4 fucose residues may both mediate binding to GII.4 noroviruses
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Title
Lewis histo-blood group α1,3/α1,4 fucose residues may both mediate binding to GII.4 noroviruses
Authors
Keywords
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Journal
GLYCOBIOLOGY
Volume 22, Issue 9, Pages 1163-1172
Publisher
Oxford University Press (OUP)
Online
2012-05-16
DOI
10.1093/glycob/cws084
References
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Note: Only part of the references are listed.- Structure of the Lectin Regulatory Domain of the Cholesterol-Dependent Cytolysin Lectinolysin Reveals the Basis for Its Lewis Antigen Specificity
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- Structural Analysis of Histo-Blood Group Antigen Binding Specificity in a Norovirus GII.4 Epidemic Variant: Implications for Epochal Evolution
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- Qualitative and Quantitative Analysis of the Binding of GII.4 Norovirus Variants onto Human Blood Group Antigens
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- Crystal Structures of GII.10 and GII.12 Norovirus Protruding Domains in Complex with Histo-Blood Group Antigens Reveal Details for a Potential Site of Vulnerability
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- Crystallography of a Lewis-Binding Norovirus, Elucidation of Strain-Specificity to the Polymorphic Human Histo-Blood Group Antigens
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- Computational studies on the interaction of ABO-active saccharides with the norovirus VA387 capsid protein can explain experimental binding data
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- Viral shape-shifting: norovirus evasion of the human immune system
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- A Possible Role for Metallic Ions in the Carbohydrate Cluster Recognition Displayed by a Lewis Y Specific Antibody
- (2009) William Farrugia et al. PLoS One
- Human noroviruses recognize sialyl Lewis x neoglycoprotein
- (2008) Gustaf E Rydell et al. GLYCOBIOLOGY
- Outbreak studies of a GII-3 and a GII-4 norovirus revealed an association between HBGA phenotypes and viral infection
- (2008) Ming Tan et al. JOURNAL OF MEDICAL VIROLOGY
- Noroviruses Distinguish between Type 1 and Type 2 Histo-Blood Group Antigens for Binding
- (2008) H. Shirato et al. JOURNAL OF VIROLOGY
- Elucidation of strain-specific interaction of a GII-4 norovirus with HBGA receptors by site-directed mutagenesis study
- (2008) Ming Tan et al. VIROLOGY
- Mechanisms of GII.4 Norovirus Persistence in Human Populations
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