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首页> 外文期刊>Journal of applied microbiology >Cell wall modifications during osmotic stress in Lactobacillus casei
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Cell wall modifications during osmotic stress in Lactobacillus casei

机译:干酪乳杆菌渗透胁迫过程中的细胞壁修饰

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Aims: To study the modification of the cell wall of Lactobacillus casei ATCC 393 grown in high salt conditions.Methods and Results: Differences in the overall structure of cell wall between growth in high salt (MRS + 1 mol l(-1) NaCl; N condition) and control (MRS; C condition) conditions were determined by transmission electronic microscopy and analytical procedures. Lactobacillus casei cells grown in N condition were significantly larger than cells grown under unstressed C condition. Increased sensitivity to mutanolysin and antibiotics with target in the cell wall was observed in N condition. Purified cell wall also showed the increased sensitivity to lysis by mutanolysin. Analysis of peptidoglycan (PG) from stressed cells showed that modification was at the structural level in accordance with a decreased PG cross-link involving penicillin-binding proteins (PBP). Nine PBP were first described in this species and these proteins were expressed in low percentages or presented a modified pattern of saturation with penicillin G (Pen G) during growth in high salt. Three of the essential PBP were fully saturated in N condition at lower Pen G concentrations than in C condition, suggesting differences in functionality in vivo.Conclusions: The results show that growth in high salt modified the structural properties of the cell wall.Significance and Impact of the Study: Advances in understanding the adaptation to high osmolarity, in particular those involving sensitivity to lysis of lactic acid bacteria.
机译:目的:研究在高盐条件下生长的干酪乳杆菌ATCC 393的细胞壁的修饰。方法与结果:高盐(MRS + 1 mol l(-1)NaCl;高盐生长)之间细胞壁整体结构的差异。通过透射电子显微镜和分析程序确定N条件)和对照(MRS; C条件)条件。在N条件下生长的干酪乳杆菌细胞显着大于在无压力C条件下生长的细胞。在N条件下,观察到细胞壁中的靶细胞对变溶素和抗生素的敏感性增加。纯化的细胞壁还显示出对变溶素裂解的敏感性增加。分析来自应激细胞的肽聚糖(PG),表明修饰是在结构水平上,与涉及青霉素结合蛋白(PBP)的PG交联减少有关。首先在该物种中描述了九种PBP,这些蛋白以低百分比表达或在高盐生长过程中呈现出青霉素G(Pen G)饱和的修饰模式。在Pen浓度低于C浓度的条件下,N条件下三种必需的PBP完全饱和,表明体内功能存在差异。结论:结果表明,高盐的生长会改变细胞壁的结构特性。研究方向:在了解对高渗透压的适应性方面取得的进展,特别是那些涉及对乳酸菌裂解敏感的适应性研究。

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