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各种细菌碳水化合物转运机制的选择性优势。

Selective advantages of various bacterial carbohydrate transport mechanisms.

作者信息

Andrews K J, Lin E C

出版信息

Fed Proc. 1976 Aug;35(10):2185-9.

PMID:820574
Abstract

At least four strategies have been developed by bacteria for capturing carbohydrates. They are typified by the transport mechanisms for glycerol, glucose, lactose, and galactose in Escherichia coli. Glycerol enters the cell by facilitated diffusion catalyzed by specific membrane protein. Once inside the cell, the substrate is trapped by phosphorylation mediated by an adenosine triphosphate (ATP)-dependent kinase. glucose is phosphorylated in transit by a membrane-associated phosphoenolpyruvate phosphotransferase system (PTS). A specific component of this complex serves also for signal recognition to chemotaxis. Lactose is concentrated chemically unaltered by beta-galactoside permease driven by a proton motive force. Galactose is also pumped into the cell, but the process is energized by ATP or its equivalent. In addition, there is a periplasmic galactose-binding protein essential for both transport and chemotactic response. The relative functional merits of each kind of transport mechanism are discussed. Although many bacterial species possess both the concentrative mechanism and the PTS, some employ the former and others the latter for beta-galactoside utilization. The postulate that the PTS is more avid in scavenging while the concentrative permease system permits a broader range of substrate exploitation is supported by the growth responses of 12 bacterial strains to several beta-galactosides.

摘要

细菌已开发出至少四种摄取碳水化合物的策略。它们以大肠杆菌中甘油、葡萄糖、乳糖和半乳糖的转运机制为代表。甘油通过特定膜蛋白催化的易化扩散进入细胞。一旦进入细胞,底物就会被依赖三磷酸腺苷(ATP)的激酶介导的磷酸化作用捕获。葡萄糖在转运过程中通过膜相关的磷酸烯醇丙酮酸磷酸转移酶系统(PTS)进行磷酸化。该复合物的一个特定组分也用于趋化作用的信号识别。乳糖通过由质子动力驱动的β-半乳糖苷通透酶在化学上未改变的情况下被浓缩。半乳糖也被泵入细胞,但该过程由ATP或其等效物提供能量。此外,有一种周质半乳糖结合蛋白对于转运和趋化反应都至关重要。讨论了每种转运机制的相对功能优点。尽管许多细菌物种同时拥有浓缩机制和PTS,但一些细菌使用前者,而另一些细菌使用后者来利用β-半乳糖苷。12种细菌菌株对几种β-半乳糖苷的生长反应支持了以下假设:PTS在清除方面更积极,而浓缩通透酶系统允许更广泛的底物利用。

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