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2
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本文引用的文献

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Intracellular Conditions Required for Initiation of Solvent Production by Clostridium acetobutylicum.梭菌产溶剂的细胞内条件的启动。
Appl Environ Microbiol. 1986 Jul;52(1):86-91. doi: 10.1128/aem.52.1.86-91.1986.
2
Domain motions in GroEL upon binding of an oligopeptide.寡肽结合后GroEL中的结构域运动。
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3
Overexpression of groESL in Clostridium acetobutylicum results in increased solvent production and tolerance, prolonged metabolism, and changes in the cell's transcriptional program.丙酮丁醇梭菌中groESL的过表达导致溶剂产量增加、耐受性增强、代谢延长以及细胞转录程序的改变。
Appl Environ Microbiol. 2003 Aug;69(8):4951-65. doi: 10.1128/AEM.69.8.4951-4965.2003.
4
Identification of Lactobacillus reuteri genes specifically induced in the mouse gastrointestinal tract.在小鼠胃肠道中特异性诱导的罗伊氏乳杆菌基因的鉴定。
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5
New thermosensitive delivery vector and its use to enable nisin-controlled gene expression in Lactobacillus gasseri.新型热敏递送载体及其在加氏乳杆菌中实现乳链菌肽控制基因表达的应用。
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Heat and osmotic stress responses of probiotic Lactobacillus rhamnosus HN001 (DR20) in relation to viability after drying.益生菌鼠李糖乳杆菌HN001(DR20)在干燥后与活力相关的热应激和渗透应激反应
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Improved survival of Lactobacillus paracasei NFBC 338 in spray-dried powders containing gum acacia.副干酪乳杆菌NFBC 338在含有阿拉伯胶的喷雾干燥粉末中的存活率提高。
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Fermentation of sugar mixtures using Escherichia coli catabolite repression mutants engineered for production of L-lactic acid.使用为生产L-乳酸而改造的大肠杆菌分解代谢阻遏突变体对糖混合物进行发酵。
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Stress responses in lactic acid bacteria.乳酸菌中的应激反应。
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Assessment of stress response of the probiotic Lactobacillus acidophilus.益生菌嗜酸乳杆菌应激反应的评估
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过量表达GroESL的乳酸乳球菌和益生菌副干酪乳杆菌NFBC 338的应激耐受性增强。

Improved stress tolerance of GroESL-overproducing Lactococcus lactis and probiotic Lactobacillus paracasei NFBC 338.

作者信息

Desmond C, Fitzgerald G F, Stanton C, Ross R P

机构信息

Teagasc, Biotechnology Centre, Moorepark, Fermoy, County Cork, Ireland.

出版信息

Appl Environ Microbiol. 2004 Oct;70(10):5929-36. doi: 10.1128/AEM.70.10.5929-5936.2004.

DOI:10.1128/AEM.70.10.5929-5936.2004
PMID:15466535
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC522070/
Abstract

The bacterial heat shock response is characterized by the elevated expression of a number of chaperone complexes. Two-dimensional polyacrylamide gel electrophoresis revealed that GroEL expression in probiotic Lactobacillus paracasei NFBC 338 was increased under heat adaptation conditions (52 degrees C for 15 min). Subsequently, the groESL operon of L. paracasei NFBC 338 was PCR amplified, and by using the nisin-inducible expression system, two plasmids, pGRO1 and pGRO2, were constructed on the basis of vectors pNZ8048 and pMSP3535, respectively. These vectors were transferred into Lactococcus lactis(pGRO1) and L. paracasei(pGRO2), and after induction with nisin, overexpressed GroEL represented 15 and 20% of the total cellular protein in each strain, respectively. Following heat shock treatment of lactococci (at 54 degrees C) and lactobacilli (at 60 degrees C), the heat-adapted cultures maintained the highest level of viability (5-log-unit increase, approximately) in each case, while it was found that the GroESL-overproducing strains performed only moderately better (1-log-unit increase) than the controls. On the other hand, the salt tolerance of both GroESL-overproducing strains (in 5 M NaCl) was similar to that of the parent cultures. Interestingly, both strains overproducing GroESL exhibited increased solvent tolerance, most notably, the ability to grow in the presence of butanol (0.5% [vol/vol]) for 5 h, while the viability of the parent strain declined. These results confirm the integral role of GroESL in solvent tolerance, and to a lesser extent, thermotolerance of lactic acid bacteria. Furthermore, this study demonstrates that technologically sensitive cultures, including certain probiotic lactobacilli, can potentially be manipulated to become more robust for survival under harsh conditions, such as food product development and gastrointestinal transit.

摘要

细菌热休克反应的特征是多种伴侣蛋白复合物的表达升高。二维聚丙烯酰胺凝胶电泳显示,益生菌副干酪乳杆菌NFBC 338中GroEL的表达在热适应条件下(52℃处理15分钟)有所增加。随后,对副干酪乳杆菌NFBC 338的groESL操纵子进行PCR扩增,并利用乳链菌肽诱导表达系统,分别基于载体pNZ8048和pMSP3535构建了两个质粒pGRO1和pGRO2。这些载体分别转入乳酸乳球菌(pGRO1)和副干酪乳杆菌(pGRO2),经乳链菌肽诱导后,过表达的GroEL分别占各菌株总细胞蛋白的15%和20%。对乳酸乳球菌(54℃)和乳杆菌(60℃)进行热休克处理后,热适应培养物在每种情况下均保持了最高的活力水平(约增加5个对数单位),而发现GroESL过量表达菌株的表现仅比对照略好(增加1个对数单位)。另一方面,两种GroESL过量表达菌株在5 M NaCl中的耐盐性与亲本培养物相似。有趣的是,两种GroESL过量表达菌株均表现出更高的耐溶剂性,最显著的是,它们能够在0.5%(体积/体积)丁醇存在的情况下生长5小时,而亲本菌株的活力则下降。这些结果证实了GroESL在乳酸菌耐溶剂性中起重要作用,在耐热性方面作用较小。此外,本研究表明,包括某些益生菌乳杆菌在内的对技术敏感的培养物有可能被操控,从而在食品开发和胃肠道转运等恶劣条件下更具生存能力。