Institut National de la Recherche Agronomique, UMR1319 Micalis, Jouy-en-Josas, France.
PLoS One. 2012;7(2):e32301. doi: 10.1371/journal.pone.0032301. Epub 2012 Feb 27.
Peptidoglycan (PG) is the major component of Gram positive bacteria cell wall and is essential for bacterial integrity and shape. Bacteria synthesize PG hydrolases (PGHs) which are able to cleave bonds in their own PG and play major roles in PG remodelling required for bacterial growth and division. Our aim was to identify the main PGHs in Lactobacillus casei BL23, a lactic acid bacterium with probiotic properties.The PGH complement was first identified in silico by amino acid sequence similarity searches of the BL23 genome sequence. Thirteen PGHs were detected with different predicted hydrolytic specificities. Transcription of the genes was confirmed by RT-PCR. A proteomic analysis combining the use of SDS-PAGE and LC-MS/MS revealed the main seven PGHs synthesized during growth of L. casei BL23. Among these PGHs, LCABL_02770 (renamed Lc-p75) was identified as the major one. This protein is the homolog of p75 (Msp1) major secreted protein of Lactobacillus rhamnosus GG, which was shown to promote survival and growth of intestinal epithelial cells. We identified its hydrolytic specificity on PG and showed that it is a γ-D-glutamyl-L-lysyl-endopeptidase. It has a marked specificity towards PG tetrapeptide chains versus tripeptide chains and for oligomers rather than monomers. Immunofluorescence experiments demonstrated that Lc-p75 localizes at cell septa in agreement with its role in daughter cell separation. It is also secreted under an active form as detected in zymogram. Comparison of the muropeptide profiles of wild type and Lc-p75-negative mutant revealed a decrease of the amount of disaccharide-dipeptide in the mutant PG in agreement with Lc-p75 activity. As a conclusion, Lc-p75 is the major L. casei BL23 PGH with endopeptidase specificity and a key role in daughter cell separation. Further studies will aim at investigating the role of Lc-p75 in the anti-inflammatory potential of L. casei BL23.
肽聚糖(PG)是革兰氏阳性菌细胞壁的主要成分,对细菌的完整性和形状至关重要。细菌合成 PG 水解酶(PGHs),这些酶能够在自身 PG 中切割键,并在细菌生长和分裂所需的 PG 重塑中发挥主要作用。我们的目的是鉴定具有益生菌特性的乳酸乳球菌 BL23 中的主要 PGHs。通过对 BL23 基因组序列的氨基酸序列相似性搜索,首先在计算机中鉴定了 PGH 成分。检测到 13 种具有不同预测水解特异性的 PGHs。通过 RT-PCR 确认了基因的转录。结合 SDS-PAGE 和 LC-MS/MS 的蛋白质组学分析揭示了 L. casei BL23 生长过程中合成的主要七种 PGHs。在这些 PGHs 中,LCABL_02770(重命名为 Lc-p75)被鉴定为主要的一种。这种蛋白质是鼠李糖乳杆菌 GG 主要分泌蛋白 p75(Msp1)的同源物,它被证明可以促进肠上皮细胞的存活和生长。我们确定了它在 PG 上的水解特异性,并表明它是一种γ-D-谷氨酰-L-赖氨酰-内肽酶。它对 PG 四肽链与三肽链以及寡聚物而不是单体具有明显的特异性。免疫荧光实验表明,Lc-p75 定位于细胞隔膜处,与其在子细胞分离中的作用一致。在酶谱中也检测到它以活性形式分泌。野生型和 Lc-p75 阴性突变体的 muropeptide 谱比较表明,突变体 PG 中二糖-二肽的量减少,与 Lc-p75 的活性一致。总之,Lc-p75 是 L. casei BL23 的主要 PGH,具有内肽酶特异性,在子细胞分离中起关键作用。进一步的研究旨在研究 Lc-p75 在 L. casei BL23 抗炎潜力中的作用。