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乳酸链球菌中的半乳糖转运系统。

Galactose transport systems in Streptococcus lactis.

作者信息

Thompson J

出版信息

J Bacteriol. 1980 Nov;144(2):683-91. doi: 10.1128/jb.144.2.683-691.1980.

Abstract

Galactose-grown cells of Streptococcus lactis ML3 have the capacity to transport the growth sugar by two separate systems: (i) the phosphoenolpyruvate-dependent phosphotransferase system and (ii) an adenosine 5'-triphosphate-energized permease system. Proton-conducting uncouplers (tetrachlorosalicylanilide and carbonyl cyanide-m-chlorophenyl hydrazone) inhibited galactose uptake by the permease system, but had no effect on phosphotransferase activity. Inhibition and efflux experiments conducted using beta-galactoside analogs showed that the galactose permease had a high affinity for galactose, methyl-beta-D-thiogalactopyranoside, and methyl-beta-D-galactopyranoside, but possessed little or no affinity for glucose and lactose. The spatial configurations of hydroxyl groups at C-2, C-4, and C-6 were structurally important in facilitating interaction between the carrier and the sugar analog. Iodoacetate had no inhibitory effect on accumulation of galactose, methyl-beta-D-thiogalactopyranoside, or lactose via the phosphotransferase system. However, after exposure of the cells to p-chloromercuribenzoate, phosphoenolpyruvate-dependent uptake of lactose and methyl-beta-D-thiogalactopyranoside were reduced by 75 and 100%, respectively, whereas galactose phosphotransferase activity remained unchanged. The independent kinetic analysis of each transport system was achieved by the selective generation of the appropriate energy source (adenosine 5'-triphosphate or phosphoenolpyruvate) in vivo. The maximum rates of galactose transport by the two systems were similar, but the permease system exhibited a 10-fold greater affinity for sugar than did the phosphotransferase system.

摘要

乳酸乳球菌ML3在以半乳糖为生长底物时,能够通过两种独立的系统转运生长所需的糖类:(i)磷酸烯醇式丙酮酸依赖性磷酸转移酶系统;(ii)一种由三磷酸腺苷供能的通透酶系统。质子传导解偶联剂(四氯水杨酰苯胺和羰基氰化物间氯苯腙)抑制了通透酶系统对半乳糖的摄取,但对磷酸转移酶活性没有影响。使用β-半乳糖苷类似物进行的抑制和流出实验表明,半乳糖通透酶对半乳糖、甲基-β-D-硫代吡喃半乳糖苷和甲基-β-D-吡喃半乳糖苷具有高亲和力,但对葡萄糖和乳糖几乎没有或没有亲和力。C-2、C-4和C-6位羟基的空间构型在促进载体与糖类似物之间的相互作用方面具有重要的结构意义。碘乙酸对通过磷酸转移酶系统积累半乳糖、甲基-β-D-硫代吡喃半乳糖苷或乳糖没有抑制作用。然而,在细胞暴露于对氯汞苯甲酸后,磷酸烯醇式丙酮酸依赖性摄取乳糖和甲基-β-D-硫代吡喃半乳糖苷分别降低了75%和100%,而半乳糖磷酸转移酶活性保持不变。通过在体内选择性生成适当的能量来源(三磷酸腺苷或磷酸烯醇式丙酮酸),实现了对每个转运系统的独立动力学分析。两个系统转运半乳糖的最大速率相似,但通透酶系统对糖的亲和力比磷酸转移酶系统高10倍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a7bf/294718/f09974b542ef/jbacter00572-0209-a.jpg

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