Saturation transfer difference nuclear magnetic resonance titrations reveal complex multistep-binding of l-fucose to norovirus particles

No Thumbnail Available
File version
Author(s)
Mallagaray, A
Rademacher, C
Parra, F
Hansman, G
Peters, T
Griffith University Author(s)
Primary Supervisor
Other Supervisors
Editor(s)
Date
2017
Size
File type(s)
Location
License
Abstract

Recently, combined nuclear magnetic resonance (NMR), native mass spectrometry (MS) and X-ray crystallographic studies have demonstrated that binding of histo-blood group antigens (HBGAs) to norovirus capsid protein (P-dimers) is a cooperative process involving four binding pockets. Here, we show that binding to norovirus virus-like particles (VLPs) is even more complex. We performed saturation transfer difference (STD) NMR titration experiments with two representative genotypes of norovirus VLPs using l-fucose as a minimal HBGA. Compared to titrations with P-dimers, the corresponding binding isotherms reflect at least six distinct binding events.

Journal Title

Glycobiology

Conference Title
Book Title
Edition
Volume

27

Issue

1

Thesis Type
Degree Program
School
Publisher link
Patent number
Funder(s)
Grant identifier(s)
Rights Statement
Rights Statement
Item Access Status
Note
Access the data
Related item(s)
Subject

Biological sciences

Health sciences

Medical microbiology

Science & Technology

Life Sciences & Biomedicine

Biochemistry & Molecular Biology

cooperative binding

Persistent link to this record
Citation

Mallagaray, A; Rademacher, C; Parra, F; Hansman, G; Peters, T, Saturation transfer difference nuclear magnetic resonance titrations reveal complex multistep-binding of l-fucose to norovirus particles, Glycobiology, 2017, 27 (1), pp. 80-86

Collections