Biofilm-producing Escherichia coli O104:H4 overcomes bile salts toxicity by expressing virulence and resistance proteins

Author:

Machado Maxsueli Aparecida Moura123ORCID,Chapartegui-González Itziar4ORCID,Castro Vinicius Silva56ORCID,Figueiredo Eduardo Eustáquio de Souza56ORCID,Conte-Junior Carlos Adam123ORCID,Torres Alfredo G4ORCID

Affiliation:

1. Food Science Program (PPGCAL), Chemistry Institute, Federal University of Rio de Janeiro (UFRJ) , Rio de Janeiro 21941-909 , Brazil

2. Center for Food Analysis (NAL), Technological Development Support Laboratory (LADETEC), Federal University of Rio de Janeiro (UFRJ), Cidade Universitaria , Rio de Janeiro 21941-598, RJ , Brazil

3. Laboratory of Advanced Analysis in Biochemistry and Molecular Biology (LAABBM), Department of Biochemistry, Federal University of Rio de Janeiro (UFRJ), Cidade Universitaria , Rio de Janeiro 21941-909, RJ , Brazil

4. Department of Microbiology and Immunology, University of Texas Medical Branch (UTMB) , Galveston, TX 77555 , United States

5. Animal Science Program (PPGCA). Federal University of Mato Grosso (UFMT) , Cuiabá, Mato Grosso 78060-900 , Brazil

6. Nutrition, Food and Metabolism Program (PPGNAM). Federal University of Mato Grosso (UFMT) , Cuiabá, Mato Grosso 78060-900 , Brazil

Abstract

Abstract We investigated bile salts’ ability to induce phenotypic changes in biofilm production and protein expression of pathogenic Escherichia coli strains. For this purpose, 82 pathogenic E. coli strains isolated from humans (n = 70), and animals (n = 12), were examined for their ability to form biofilms in the presence or absence of bile salts. We also identified bacterial proteins expressed in response to bile salts using sodium dodecyl-sulfate polyacrylamide gel electrophoresis (SDS-electrophoresis) and liquid chromatography-mass spectrometry (LC-MS/MS). Lastly, we evaluated the ability of these strains to adhere to Caco-2 epithelial cells in the presence of bile salts. Regarding biofilm formation, two strains isolated from an outbreak in Republic of Georgia in 2009 were the only ones that showed a high and moderate capacity to form biofilm in the presence of bile salts. Further, we observed that those isolates, when in the presence of bile salts, expressed different proteins identified as outer membrane proteins (i.e. OmpC), and resistance to adverse growth conditions (i.e. F0F1, HN-S, and L7/L12). We also found that these isolates exhibited high adhesion to epithelial cells in the presence of bile salts. Together, these results contribute to the phenotypic characterization of E. coli O104: H4 strains.

Funder

CNPq

UTMB

Publisher

Oxford University Press (OUP)

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