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Proteomics Analysis of Lactobacillus casei Zhang a New Probiotic Bacterium Isolated from Traditional Home-made Koumiss in Inner Mongolia of China

机译:内蒙古传统考迈斯分离的新型益生菌干酪乳杆菌张氏杆菌的蛋白质组学分析

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摘要

Lactobacillus casei Zhang, isolated from traditional home-made koumiss in Inner Mongolia of China, was considered as a new probiotic bacterium by probiotic selection tests. We carried out a proteomics study to identify and characterize proteins expressed by L. casei Zhang in the exponential phase and stationary phase. Cytosolic proteins of the strain cultivated in de Man, Rogosa, and Sharpe broth were resolved by two-dimensional gel electrophoresis using pH 4–7 linear gradients. The number of protein spots quantified from the gels was 487 ± 21 (exponential phase) and 494 ± 13 (stationary phase) among which a total of 131 spots were identified by MALDI-TOF/MS and/or MALDI-TOF/TOF according to significant growth phase-related differences or high expression intensity proteins. Accompanied by the cluster of orthologous groups (COG), codon adaptation index (CAI), and GRAVY value analysis, the study provided a very first insight into the profile of protein expression as a reference map of L. casei. Forty-seven spots were also found in the study that showed statistically significant differences between exponential phase and stationary phase. Thirty-three of the spots increased at least 2.5-fold in the stationary phase in comparison with the exponential phase, including 19 protein spots (e.g. Hsp20, DnaK, GroEL, LuxS, pyruvate kinase, and GalU) whose intensity up-shifted above 3.0-fold. Transcriptional profiles were conducted to confirm several important differentially expressed proteins by using real time quantitative PCR. The analysis suggests that the differentially expressed proteins were mainly categorized as stress response proteins and key components of central and intermediary metabolism, indicating that these proteins might play a potential important role for the adaptation to the surroundings, especially the accumulation of lactic acid in the course of growth, and the physiological processes in bacteria cell.
机译:从中国内蒙古传统的自制苦瓜中分离出的干酪乳杆菌(Lactobacillus casei Zhang),通过益生菌选择测试被认为是一种新型的益生菌。我们进行了蛋白质组学研究,以鉴定和表征干酪乳杆菌张氏在指数期和固定期表达的蛋白质。在德曼,罗戈萨和夏普肉汤中培养的菌株的胞质蛋白通过二维凝胶电泳使用pH 4–7线性梯度分离。从凝胶中定量的蛋白质斑点数量为487±21(指数相)和494±13(固定相),其中根据MALDI-TOF / MS和/或MALDI-TOF / TOF根据以下方法鉴定出总共131个斑点:显着的生长阶段相关差异或高表达强度蛋白。伴随着直系同源族群(COG),密码子适应指数(CAI)和GRAVY值分析,该研究为蛋白质表达谱作为干酪乳杆菌的参考图谱提供了第一个见解。在研究中还发现了47个斑点,这些斑点显示出指数相和固定相之间的统计学差异。与指数期相比,固定相中的33个斑点增加了至少2.5倍,包括19个蛋白质斑点(例如Hsp20,DnaK,GroEL,LuxS,丙酮酸激酶和GalU),其强度上移至3.0以上-折。通过使用实时定量PCR进行转录谱分析,以确认几种重要的差异表达蛋白。分析表明,差异表达的蛋白质主要被归类为应激反应蛋白质和中枢和中间代谢的关键成分,这表明这些蛋白质可能在适应环境(尤其是乳酸在此过程中的积累)中发挥潜在的重要作用。以及细菌细胞的生理过程

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