Galperin MY, Noll KM, Romano AH
Department of Molecular and Cell Biology, The University of Connecticut, Storrs, Connecticut 06269-3125
Appl Environ Microbiol. 1997 Mar;63(3):969-72. doi: 10.1128/aem.63.3.969-972.1997.
Regulation of the beta-galactoside transport system in response to growth substrates in the extremely thermophilic anaerobic bacterium Thermotoga neapolitana was studied with the nonmetabolizable analog methyl-beta-D-thiogalactopyranoside (TMG) as the transport substrate. T. neapolitana cells grown on galactose or lactose accumulated TMG against a concentration gradient in an intracellular free sugar pool that was exchangeable with external galactose or lactose and showed induced levels of beta-galactosidase. Cells grown on glucose, maltose, or galactose plus glucose showed no capacity to accumulate TMG, though these cells carried out active transport of the nonmetabolizable glucose analog 2-deoxy-D-glucose. Glucose neither inhibited TMG uptake nor caused efflux of preaccumulated TMG; rather, glucose promoted TMG uptake by supplying metabolic energy. These data show that beta-D-galactosides are taken up by T. neapolitana via an active transport system that can be induced by galactose or lactose and repressed by glucose but which is not inhibited by glucose. Thus, the phenomenon of catabolite repression is present in T. neapolitana with respect to systems catalyzing both the transport and hydrolysis of beta-D-galactosides, but inducer exclusion and inducer expulsion, mechanisms that regulate permease activity, are not present. Regulation is manifest at the level of synthesis of the beta-galactoside transport system but not in the activity of the system.
以不可代谢的类似物甲基-β-D-硫代吡喃半乳糖苷(TMG)作为转运底物,研究了嗜热厌氧菌那不勒斯嗜热栖热菌(Thermotoga neapolitana)中β-半乳糖苷转运系统对生长底物的响应。在半乳糖或乳糖上生长的那不勒斯嗜热栖热菌细胞,可在细胞内游离糖池中逆浓度梯度积累TMG,该糖池可与外部半乳糖或乳糖交换,并显示出诱导水平的β-半乳糖苷酶。在葡萄糖、麦芽糖或半乳糖加葡萄糖上生长的细胞没有积累TMG的能力,尽管这些细胞能进行不可代谢的葡萄糖类似物2-脱氧-D-葡萄糖的主动转运。葡萄糖既不抑制TMG的摄取,也不会导致预先积累的TMG外流;相反,葡萄糖通过提供代谢能量促进TMG的摄取。这些数据表明,那不勒斯嗜热栖热菌通过一种主动转运系统摄取β-D-半乳糖苷,该系统可被半乳糖或乳糖诱导,被葡萄糖抑制,但不受葡萄糖抑制。因此,就催化β-D-半乳糖苷转运和水解的系统而言,那不勒斯嗜热栖热菌中存在分解代谢物阻遏现象,但不存在调节通透酶活性的诱导物排除和诱导物排出机制。调节表现在β-半乳糖苷转运系统的合成水平上,而不是该系统的活性上。