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The Chemical Structure Properties and Promoting Biofilm Activity of Exopolysaccharide Produced by Shigella flexneri.


ABSTRACT: Shigella flexneri is a waterborne and foodborne pathogen that can damage human health. The exopolysaccharides (S-EPS) produced by S. flexneri CMCC51574 were found to promote biofilm formation and virulence. In this research, the crude S-EPS produced by S. flexneri CMCC51574 were separated into three main different fractions, S-EPS 1-1, S-EPS 2-1, and S-EPS 3-1. The structure of the S-ESP 2-1 was identified by FT-IR, ion chromatography analysis, methylation analysis, and NMR analysis. The main chain of S-EPS 2-1 was α-Manp-(1 → 3)-α-Manp-[(1 → 2,6)-α-Manp]15-[(1 → 2)-Manf-(1→]8; there were two branched-chain R1 and R2 with a ratio of 4:1, R1: α-Manp-(1 → 6)- and R2: α-Manp-(1 → 6)- Glc-(1 → 6)- were linked with (1 → 2,6)-α-Manp. It was found that S-EPS 2-1 exhibited the highest promoting effect on biofilm formation of S. flexneri. The S-EPS 2-1 was identified to interact with extracellular DNA (eDNA) of S. flexneri, indicating that the S-EPS 2-1 was the specific polysaccharide in the spatial structure of biofilm formation. Our research found the important role of S-EPS in S. flexneri biofilm formation, which will help us to understand the underlining mechanisms of the biofilm formation and find effective ways to prevent S. flexneri biofilm infection.

SUBMITTER: Song Y 

PROVIDER: S-EPMC8854994 | biostudies-literature | 2021

REPOSITORIES: biostudies-literature

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The Chemical Structure Properties and Promoting Biofilm Activity of Exopolysaccharide Produced by <i>Shigella flexneri</i>.

Song Yinglong Y   Ma Fenglian F   Sun Mengying M   Mu Guangqing G   Tuo Yanfeng Y  

Frontiers in microbiology 20220204


<i>Shigella flexneri</i> is a waterborne and foodborne pathogen that can damage human health. The exopolysaccharides (S-EPS) produced by <i>S. flexneri</i> CMCC51574 were found to promote biofilm formation and virulence. In this research, the crude S-EPS produced by <i>S. flexneri</i> CMCC51574 were separated into three main different fractions, S-EPS 1-1, S-EPS 2-1, and S-EPS 3-1. The structure of the <i>S</i>-ESP 2-1 was identified by FT-IR, ion chromatography analysis, methylation analysis, a  ...[more]

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