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干酪乳杆菌中乳糖-磷酸烯醇丙酮酸依赖性磷酸转移酶系统和β-D-磷酸半乳糖苷半乳糖水解酶活性的调控

Regulation of lactose-phosphoenolpyruvate-dependent phosphotransferase system and beta-D-phosphogalactoside galactohydrolase activities in Lactobacillus casei.

作者信息

Chassy B M, Thompson J

出版信息

J Bacteriol. 1983 Jun;154(3):1195-203. doi: 10.1128/jb.154.3.1195-1203.1983.

Abstract

The lactose-phosphoenolpyruvate-dependent phosphotransferase system (lac-PTS) and beta-D-phosphogalactoside galactohydrolase (P-beta-gal) mediate the metabolism of lactose by Lactobacillus casei. Starved cells of L. casei contained a high intracellular concentration of phosphoenolpyruvate, and this endogenous energy reserve facilitated characterization of phosphotransferase system activities in physiologically intact cells. Data obtained from transport studies with whole cells and from in vitro phosphotransferase system assays with permeabilized cells revealed that the lac-PTS had a high affinity for beta-galactosides (e.g., lactose, lactulose, lactobionic acid, and arabinosyl-beta-D-galactoside). lac-PTS and P-beta-gal activities were determined in wild-type strains and strains defective in the glucose-phosphoenolpyruvate-dependent phosphotransferase system after growth on various sugars and in the presence of potential inducers. We found that (i) the lac genes (i.e., the genes coding for the lac-PTS proteins and P-beta-gal) were induced by metabolizable and non-metabolizable beta-galactosides (presumably acting as their phosphorylated derivatives), (ii) galactose 6-phosphate was not an inducer in most strains, (iii) the ratio of lac-PTS activity to P-beta-gal activity in a given strain was not constant, and (iv) inhibition of lac gene expression during growth on glucose was a consequence of glucose-phosphoenolpyruvate-dependent phosphotransferase system-mediated inducer exclusion, repressive effects of a functional glucose-phosphoenolpyruvate-dependent phosphotransferase system and glucose-derived metabolites. The expression of the lac-PTS structural genes and the expression of the P-beta-gal gene are independently regulated and may be subject to both positive control and negative control.

摘要

乳糖-磷酸烯醇式丙酮酸依赖性磷酸转移酶系统(lac-PTS)和β-D-磷酸半乳糖苷半乳糖水解酶(P-β-半乳糖)介导干酪乳杆菌对乳糖的代谢。干酪乳杆菌的饥饿细胞内含有高浓度的磷酸烯醇式丙酮酸,这种内源性能量储备有助于在生理状态完整的细胞中表征磷酸转移酶系统的活性。通过全细胞转运研究以及对透化细胞进行的体外磷酸转移酶系统分析获得的数据表明,lac-PTS对β-半乳糖苷(如乳糖、乳果糖、乳糖酸和阿拉伯糖基-β-D-半乳糖苷)具有高亲和力。在野生型菌株以及葡萄糖-磷酸烯醇式丙酮酸依赖性磷酸转移酶系统有缺陷的菌株中,在以各种糖类生长以及存在潜在诱导剂的情况下测定了lac-PTS和P-β-半乳糖的活性。我们发现:(i)lac基因(即编码lac-PTS蛋白和P-β-半乳糖的基因)可被可代谢和不可代谢的β-半乳糖苷(可能作为其磷酸化衍生物起作用)诱导;(ii)在大多数菌株中,6-磷酸半乳糖不是诱导剂;(iii)在给定菌株中,lac-PTS活性与P-β-半乳糖活性的比值不恒定;(iv)在葡萄糖上生长期间lac基因表达的抑制是葡萄糖-磷酸烯醇式丙酮酸依赖性磷酸转移酶系统介导的诱导物排除、功能性葡萄糖-磷酸烯醇式丙酮酸依赖性磷酸转移酶系统的抑制作用以及葡萄糖衍生代谢物的结果。lac-PTS结构基因的表达和P-β-半乳糖基因的表达是独立调节的,并且可能受到正调控和负调控。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d583/217591/4d42cb07319f/jbacter00247-0177-a.jpg

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