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  4. Structural Basis of Ligand Selectivity by a Bacterial Adhesin Lectin Involved in Multispecies Biofilm Formation
 
research article

Structural Basis of Ligand Selectivity by a Bacterial Adhesin Lectin Involved in Multispecies Biofilm Formation

Guo, Shuaiqi
•
Vance, Tyler D. R.
•
Zahiri, Hossein
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April 1, 2021
Mbio

Carbohydrate recognition by lectins governs critical host-microbe interactions. MpPA14 (Marinomonas primoryensis PA14 domain) lectin is a domain of a 1.5-MDa adhesin responsible for a symbiotic bacterium-diatom interaction in Antarctica. Here, we show that MpPA14 binds various monosaccharides, with L-fucose and N-acetylglucosamine being the strongest ligands (dissociation constant [K-d],similar to 150 mu M). High-resolution structures of MpPA14 with 15 different sugars bound elucidated the molecular basis for the lectin's apparent binding promiscuity but underlying selectivity. MpPA14 mediates strong Ca2+-dependent interactions with the 3,4-diols of L-fucopyranose and glucopyranoses, and it binds other sugars via their specific minor isomers. Thus, MpPA14 only binds polysaccharides like branched glucans and fucoidans with these free end groups. Consistent with our findings, adhesion of MpPA14 to diatom cells was selectively blocked by L-fucose, but not by N-acetyl galactosamine. The MpPA14 lectin homolog present in a Vibrio cholerae adhesin was produced and was shown to have the same sugar binding preferences as MpPA14. The pathogen's lectin was unable to effectively bind the diatom in the presence of fucose, thus demonstrating the antiadhesion strategy of blocking infection via ligand-based antagonists.|IMPORTANCE Bacterial adhesins are key virulence factors that are essential for the pathogen-host interaction and biofilm formation that cause most infections. Many of the adhesin-driven cell-cell interactions are mediated by lectins. Our study reveals for the first time the molecular basis underlying the binding selectivity of a common bacterial adhesin lectin from the marine bacterium Marinomonas primoryensis, homologs of which are found in both environmental and pathogenic species. The lectinligand interactions illustrated at the atomic level guided the identification of a ligand that serves as an inhibitor to block bacterium-host adhesion. With conventional bactericidal antibiotics losing their potency due to resistance, our work gives critical insight into an antiadhesion strategy to treat bacterial infections.

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Type
research article
DOI
10.1128/mBio.00130-21
Web of Science ID

WOS:001191153800001

Author(s)
Guo, Shuaiqi
Vance, Tyler D. R.
Zahiri, Hossein
Eves, Robert
Stevens, Corey Alfred  
Hehemann, Jan-Hendrik
Vidal-Melgosa, Silvia
Davies, Peter L.
Date Issued

2021-04-01

Publisher

Amer Soc Microbiology

Published in
Mbio
Volume

12

Issue

2

Start page

e00130

End page

21

Subjects

Life Sciences & Biomedicine

•

Repeats-In-Toxin Adhesins

•

Bacterial Colonization And Infection

•

Lectin-Carbohydrate Interactions

•

Multispecies Biofilms

•

Structural Biology

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LP  
FunderGrant Number

Natural Science and Engineering Research Council (NSERC)

RGPIN-2016 -04810

NSERC

Available on Infoscience
April 3, 2024
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/206997
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