Shigella flexneri Targets Human Colonic Goblet Cells by O Antigen Binding to Sialyl-Tn and Tn Antigens via Glycan-Glycan Interactions

No Thumbnail Available
File version
Author(s)
Tran, ENH
Day, CJ
McCartney, E
Poole, J
Tse, E
Jennings, MP
Morona, R
Primary Supervisor
Other Supervisors
Editor(s)
Date
2020
Size
File type(s)
Location
License
Abstract

Shigella flexneri targets colonic cells in humans to initiate invasive infection processes that lead to dysentery, and direct interactions between their lipopolysaccharide O antigens and blood group A related glycans are involved in the cell adherence interactions. Here, we show that treatment with Tn and sialyl-Tn glycans, monoclonal antibodies and lectins reactive to Tn/sialyl-Tn, and luteolin (a Tn antigen synthesis inhibitor) all significantly inhibited S. flexneri adherence and invasion of cells in vitro. Surface plasmon resonance analysis showed that lipopolysaccharide O antigen had a high affinity interaction with Tn/sialyl-Tn. Immunofluorescence probing of human colon tissue with antibodies detected expression of Tn/sialyl-Tn by MUC2 producing goblet cells (GCs), and S. flexneri incubated with human colon tissue colocalized with GCs. Our findings demonstrate that S. flexneri targets GCs in the human colonic crypts via glycan–glycan interactions, establishing new insight into the infection process in humans.

Journal Title

ACS Infectious Diseases

Conference Title
Book Title
Edition
Volume

6

Issue

10

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

Medical microbiology

Shigella flexneri

Tn glycan

colonic crypts

glycan−glycan

goblet cells

Persistent link to this record
Citation

Tran, ENH; Day, CJ; McCartney, E; Poole, J; Tse, E; Jennings, MP; Morona, R, Shigella flexneri Targets Human Colonic Goblet Cells by O Antigen Binding to Sialyl-Tn and Tn Antigens via Glycan-Glycan Interactions, ACS Infectious Diseases, 2020, 6 (10), pp. 2604-2615

Collections