Suppr超能文献

乳酸乳球菌对葡萄糖和半乳糖的共代谢程度会随着嗜热链球菌乳糖操纵子(lacSZ operon)的表达而发生变化。

The extent of co-metabolism of glucose and galactose by Lactococcus lactis changes with the expression of the lacSZ operon from Streptococcus thermophilus.

作者信息

Solem Christian, Koebmann Brian, Jensen Peter R

机构信息

Center for Systems Microbiology, Department of Systems Biology, Technical University of Denmark, Building 301, DK-2800 Kgs. Lyngby, Denmark.

出版信息

Biotechnol Appl Biochem. 2008 May;50(Pt 1):35-40. doi: 10.1042/BA20070157.

Abstract

The lactose transporter and beta-galactosidase from Streptococcus thermophilus, encoded by the lacSZ operon, were introduced into the lactose-negative strain Lactococcus lactis MG1363 and the expression of the lacSZ operon was modulated by substitution of the native promoter with randomized synthetic promoters. A series of strains with various expression levels of lacSZ were examined for their fermentation of lactose. Strains with a high expression level were found to metabolize lactose in a similar manner to S. thermophilus, i.e. the galactose moiety of lactose was excreted to the growth medium and only glucose was metabolized in glycolysis. Interestingly, strains with low expression of the operon showed a mixed acid metabolism and co-metabolism of galactose and glucose. The lactose flux increased gradually with increasing expression of the lacSZ operon until an optimum was observed at intermediate beta-galactosidase activities of 2000-3000 Miller units. At higher expression levels, the flux decreased. These strains had a glycolytic flux comparable with those of reference strains with the standard lactococcal PTS(lac) (lactose phosphotransferase transport system) lactose transporter, which indicates that lactose transport is not rate-limiting for glycolysis in Lactococcus. Finally, an additional ATP drain was introduced into the fastest growing strain, CS2004, to test whether the ATP demand controlled glycolysis under these conditions, but in fact no increase in glycolytic flux was observed.

摘要

由乳糖操纵子(lacSZ 操纵子)编码的嗜热链球菌乳糖转运蛋白和β-半乳糖苷酶被导入乳糖阴性菌株乳酸乳球菌 MG1363 中,并且通过用随机合成启动子替换天然启动子来调节 lacSZ 操纵子的表达。对一系列具有不同 lacSZ 表达水平的菌株进行乳糖发酵检测。发现高表达水平的菌株代谢乳糖的方式与嗜热链球菌相似,即乳糖的半乳糖部分被分泌到生长培养基中,并且在糖酵解过程中仅葡萄糖被代谢。有趣的是,该操纵子低表达的菌株表现出混合酸代谢以及半乳糖和葡萄糖的共代谢。随着 lacSZ 操纵子表达的增加,乳糖通量逐渐增加,直到在 2000 - 3000 米勒单位的中等β-半乳糖苷酶活性下观察到最佳值。在更高的表达水平下,通量下降。这些菌株的糖酵解通量与具有标准乳球菌磷酸转移酶系统(PTS)(乳糖磷酸转移酶运输系统)乳糖转运蛋白的参考菌株相当,这表明乳糖转运对乳酸乳球菌中的糖酵解不是限速因素。最后,在生长最快的菌株 CS2004 中引入额外的 ATP 消耗,以测试在这些条件下 ATP 需求是否控制糖酵解,但实际上未观察到糖酵解通量增加。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验