首页> 美国卫生研究院文献>other >EPS-SJ Exopolisaccharide Produced by the Strain Lactobacillus paracasei subsp. paracasei BGSJ2-8 Is Involved in Adhesion to Epithelial Intestinal Cells and Decrease on E. coli Association to Caco-2 Cells
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EPS-SJ Exopolisaccharide Produced by the Strain Lactobacillus paracasei subsp. paracasei BGSJ2-8 Is Involved in Adhesion to Epithelial Intestinal Cells and Decrease on E. coli Association to Caco-2 Cells

机译:由副干酪乳杆菌亚种产生的EPS-SJ外脂糖。副干酪BGSJ2-8参与上皮小肠细胞的粘附并降低大肠杆菌与Caco-2细胞的结合

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摘要

The aim of this study was to determine the role of an exopolysaccharide produced by natural dairy isolate Lactobacillus paracasei subsp. paracasei BGSJ2-8, in the adhesion to intestinal epithelial cells and a decrease in Escherichia coli’s association with Caco-2 cells. Annotation of the BGSJ2-8 genome showed the presence of a gene cluster, epsSJ, which encodes the biosynthesis of the strain-specific exopolysaccharide EPS-SJ, detected as two fractions (P1 and P2) by size exclusion chromatography (SEC) coupled with multi-angle laser light scattering (MALLS) detection. SEC-MALLS analysis revealed that an EPS-SJ- mutant (EPS7, obtained by insertion mutagenesis of the glps_2198 gene encoding primary glycosyltransferase) does not produce the P2 fraction of EPS-SJ. Transmission electron microscopy showed that EPS7 mutant has a thinner cell wall compared to the EPS-SJ+ strain BGSJ2-83 (a plasmid free-derivative of BGSJ2-8). Interestingly, strain BGSJ2-83 showed higher adhesion to Caco-2 epithelial intestinal cell line than the EPS7 mutant. Accordingly, BGSJ2-83 effectively reduced E. coli ATCC25922’s association with Caco-2 cells, while EPS7 did not show statistically significant differences. In addition, the effect of EPS-SJ on the proliferation of lymphocytes in gastrointestinal associated lymphoid tissue (GALT) was tested and the results showed that the reduction of GALT lymphocyte proliferation was higher by BGSJ2-83 than by the mutant. To the best of our knowledge this is the first report indicating that the presence of EPS (EPS-SJ) on the surface of lactobacilli can improve communication between bacteria and intestinal epithelium, implying its possible role in gut colonization.
机译:这项研究的目的是确定天然乳制品分离乳杆菌副干酪乳亚种产生的胞外多糖的作用。副干酪样BGSJ2-8,其与肠上皮细胞的粘附力和大肠杆菌与Caco-2细胞的关联性降低。 BGSJ2-8基因组的注释显示存在基因簇epsSJ,该基因簇编码菌株特异性胞外多糖EPS-SJ的生物合成,通过尺寸排阻色谱(SEC)结合多组分检测分为两个部分(P1和P2)角度激光散射(MALLS)检测。 SEC-MALLS分析显示,EPS-SJ -突变体(通过编码诱变初级糖基转移酶的glps_2198基因的插入诱变获得的EPS7)不会产生EPS-SJ的P2部分。透射电子显微镜显示,与EPS-SJ + 菌株BGSJ2-83(BGSJ2-8的质粒自由衍生物)相比,EPS7突变体的细胞壁更薄。有趣的是,菌株BGSJ2-83与EPS7突变体相比,对Caco-2上皮肠道细胞系的粘附性更高。因此,BGSJ2-83有效地减少了大肠杆菌ATCC25922与Caco-2细胞的联系,而EPS7没有显示出统计学上的显着差异。此外,测试了EPS-SJ对胃肠道相关淋巴组织(GALT)淋巴细胞增殖的影响,结果表明,BGSJ2-83比突变体对GALT淋巴细胞增殖的抑制作用更高。据我们所知,这是第一份报告,表明乳杆菌表面上存在EPS(EPS-SJ)可以改善细菌与肠上皮之间的交流,这暗示其在肠道定植中的可能作用。

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