TI Food & Nutrition, Wageningen, The Netherlands.
J Bacteriol. 2013 Feb;195(3):502-9. doi: 10.1128/JB.01321-12. Epub 2012 Nov 21.
Sortases are transpeptidases that couple surface proteins to the peptidoglycan of Gram-positive bacteria, and several sortase-dependent proteins (SDPs) have been demonstrated to be crucial for the interactions of pathogenic and nonpathogenic bacteria with their hosts. Here, we studied the role of sortase A (SrtA) in Lactobacillus plantarum WCFS1, a model Lactobacillus for probiotic organisms. An isogenic srtA deletion derivative was constructed which did not show residual SrtA activity. DNA microarray-based transcriptome analysis revealed that the srtA deletion had only minor impact on the full-genome transcriptome of L. plantarum, while the expression of SDP-encoding genes remained completely unaffected. Mass spectrometry analysis of the bacterial cell surface proteome, which was assessed by trypsinization of intact bacterial cells and by LiCl protein extraction, revealed that SrtA is required for the appropriate subcellular location of specific SDPs and for their covalent coupling to the cell envelope, respectively. We further found that SrtA deficiency did not affect the persistence and/or survival of L. plantarum in the gastrointestinal tract of mice. In addition, an in vitro immature dendritic cell (iDC) assay revealed that the removal of surface proteins by LiCl strongly affected the proinflammatory signaling properties of the SrtA-deficient strain but not of the wild type, which suggests a role of SDPs in host immune response modulation.
Sortases 是一种转肽酶,可将表面蛋白与革兰氏阳性菌的肽聚糖偶联,已有多项研究表明,几种依赖于 sortase 的蛋白(SDPs)对于致病菌和非致病菌与宿主相互作用至关重要。在这里,我们研究了 sortase A(SrtA)在植物乳杆菌 WCFS1 中的作用,该菌是益生菌的模型菌。构建了一株 SrtA 缺失的同源突变株,该突变株几乎没有残留的 SrtA 活性。基于 DNA 微阵列的转录组分析表明,srtA 缺失对植物乳杆菌的全基因组转录组仅有很小的影响,而 SDP 编码基因的表达则完全不受影响。通过对完整细菌细胞进行胰蛋白酶消化和 LiCl 蛋白提取,对细菌细胞表面蛋白组进行了质谱分析,结果表明 SrtA 分别负责特定 SDP 的适当亚细胞定位和它们与细胞包膜的共价偶联。我们还发现 SrtA 缺陷并不影响植物乳杆菌在小鼠胃肠道中的持久性和/或存活。此外,体外未成熟树突状细胞(iDC)测定表明,LiCl 去除表面蛋白强烈影响 SrtA 缺陷株的促炎信号特性,但不影响野生型的特性,这表明 SDPs 在宿主免疫反应调节中发挥作用。