Characterization of S-layer proteins of potential probiotic starter culture Lactobacillus brevis SF9B isolated from sauerkraut

S-layers represent the simplest biological membranes developed during the evolution and are one of the most abundant biopolymers on Earth. Current fundamental and applied research aim to reveal the chemical structure, morphogenesis and function of S-layer proteins (Slps). This is the first paper tha...

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Published inFood science & technology Vol. 93; pp. 257 - 267
Main Authors Banić, Martina, Uroić, Ksenija, Leboš Pavunc, Andreja, Novak, Jasna, Zorić, Katarina, Durgo, Ksenija, Petković, Hrvoje, Jamnik, Polona, Kazazić, Saša, Kazazić, Snježana, Radović, Slobodanka, Scalabrin, Simone, Hynӧnen, Ulla, Šušković, Jagoda, Kos, Blaženka
Format Journal Article
LanguageEnglish
Published Elsevier Ltd 01.07.2018
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Abstract S-layers represent the simplest biological membranes developed during the evolution and are one of the most abundant biopolymers on Earth. Current fundamental and applied research aim to reveal the chemical structure, morphogenesis and function of S-layer proteins (Slps). This is the first paper that describes the Slps of certain Lactobacillus brevis strain isolated from sauerkraut. The whole genome sequence (WGS) analysis of the L. brevis SF9B strain uncovered three genes encoding the putative Slps, but merely one, identified as similar to the SlpB of L. brevis ATCC 14869, was expressed. Slp-expressing SF9B cells exhibited increased survival in simulated gastrointestinal (GI) conditions and during freeze-drying. Their survival in stress conditions was additionally enhanced by microencapsulation, especially when using alginate with gelatine as a matrix. Thus prepared cells were subjected to simulated GI conditions and their mortality was only 0.28 ± 0.45 log CFU/mL. Furthermore, a correlation between the high surface hydrophobicity and the remarkable aggregative capacity of SF9B strain was established. The results indicate a prominent role of Slps in adhesion to mucin, extracellular matrix (ECM) proteins, and particularly to Caco-2 cells, where the removal of Slps utterly abolished the adhesiveness of SF9B cells for 7.78 ± 0.25 log CFU/mL. •S-layer protein of L. brevis SF9B is 65% similar to SlpB of L. brevis ATCC 14869.•S-layer protein of L. brevis SF9B has theoretical MW of 50.9 kDa and pI of 9.54•S-layer positively affects probiotic properties of L. brevis SF9B.•L. brevis SF9B is a potential probiotic starter culture for sauerkraut production.
AbstractList S-layers represent the simplest biological membranes developed during the evolution and are one of the most abundant biopolymers on Earth. Current fundamental and applied research aim to reveal the chemical structure, morphogenesis and function of S-layer proteins (Slps). This is the first paper that describes the Slps of certain Lactobacillus brevis strain isolated from sauerkraut. The whole genome sequence (WGS) analysis of the L. brevis SF9B strain uncovered three genes encoding the putative Slps, but merely one, identified as similar to the SlpB of L. brevis ATCC 14869, was expressed. Slp-expressing SF9B cells exhibited increased survival in simulated gastrointestinal (GI) conditions and during freeze-drying. Their survival in stress conditions was additionally enhanced by microencapsulation, especially when using alginate with gelatine as a matrix. Thus prepared cells were subjected to simulated GI conditions and their mortality was only 0.28 ± 0.45 log CFU/mL. Furthermore, a correlation between the high surface hydrophobicity and the remarkable aggregative capacity of SF9B strain was established. The results indicate a prominent role of Slps in adhesion to mucin, extracellular matrix (ECM) proteins, and particularly to Caco-2 cells, where the removal of Slps utterly abolished the adhesiveness of SF9B cells for 7.78 ± 0.25 log CFU/mL.
S-layers represent the simplest biological membranes developed during the evolution and are one of the most abundant biopolymers on Earth. Current fundamental and applied research aim to reveal the chemical structure, morphogenesis and function of S-layer proteins (Slps). This is the first paper that describes the Slps of certain Lactobacillus brevis strain isolated from sauerkraut. The whole genome sequence (WGS) analysis of the L. brevis SF9B strain uncovered three genes encoding the putative Slps, but merely one, identified as similar to the SlpB of L. brevis ATCC 14869, was expressed. Slp-expressing SF9B cells exhibited increased survival in simulated gastrointestinal (GI) conditions and during freeze-drying. Their survival in stress conditions was additionally enhanced by microencapsulation, especially when using alginate with gelatine as a matrix. Thus prepared cells were subjected to simulated GI conditions and their mortality was only 0.28 ± 0.45 log CFU/mL. Furthermore, a correlation between the high surface hydrophobicity and the remarkable aggregative capacity of SF9B strain was established. The results indicate a prominent role of Slps in adhesion to mucin, extracellular matrix (ECM) proteins, and particularly to Caco-2 cells, where the removal of Slps utterly abolished the adhesiveness of SF9B cells for 7.78 ± 0.25 log CFU/mL. •S-layer protein of L. brevis SF9B is 65% similar to SlpB of L. brevis ATCC 14869.•S-layer protein of L. brevis SF9B has theoretical MW of 50.9 kDa and pI of 9.54•S-layer positively affects probiotic properties of L. brevis SF9B.•L. brevis SF9B is a potential probiotic starter culture for sauerkraut production.
Author Novak, Jasna
Šušković, Jagoda
Hynӧnen, Ulla
Radović, Slobodanka
Uroić, Ksenija
Zorić, Katarina
Durgo, Ksenija
Banić, Martina
Jamnik, Polona
Scalabrin, Simone
Kos, Blaženka
Kazazić, Snježana
Leboš Pavunc, Andreja
Petković, Hrvoje
Kazazić, Saša
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Keywords Probiotics
Microencapsulation
Slps
Lactobacillus brevis
Adhesion
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Snippet S-layers represent the simplest biological membranes developed during the evolution and are one of the most abundant biopolymers on Earth. Current fundamental...
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SubjectTerms Adhesion
alginates
applied research
biopolymers
chemical structure
extracellular matrix
freeze drying
gastrointestinal system
gelatin
genes
human cell lines
hydrophobicity
Lactobacillus brevis
Microencapsulation
morphogenesis
mortality
mucins
Probiotics
sauerkraut
Slps
starter cultures
Title Characterization of S-layer proteins of potential probiotic starter culture Lactobacillus brevis SF9B isolated from sauerkraut
URI https://dx.doi.org/10.1016/j.lwt.2018.03.054
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