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变形链球菌的半乳糖代谢

Galactose metabolism by Streptococcus mutans.

作者信息

Abranches Jacqueline, Chen Yi-Ywan M, Burne Robert A

机构信息

Department of Oral Biology, University of Florida College of Dentistry, P.O. Box 100424, Gainesville, FL 32610, USA.

出版信息

Appl Environ Microbiol. 2004 Oct;70(10):6047-52. doi: 10.1128/AEM.70.10.6047-6052.2004.

DOI:10.1128/AEM.70.10.6047-6052.2004
PMID:15466549
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC522122/
Abstract

The galK gene, encoding galactokinase of the Leloir pathway, was insertionally inactivated in Streptococcus mutans UA159. The galK knockout strain displayed only marginal growth on galactose, but growth on glucose or lactose was not affected. In strain UA159, the sugar phosphotransferase system (PTS) for lactose and the PTS for galactose were induced by growth in lactose and galactose, although galactose PTS activity was very low, suggesting that S. mutans does not have a galactose-specific PTS and that the lactose PTS may transport galactose, albeit poorly. To determine if the galactose growth defect of the galK mutant could be overcome by enhancing lactose PTS activity, the gene encoding a putative repressor of the operon for lactose PTS and phospho-beta-galactosidase, lacR, was insertionally inactivated. A galK and lacR mutant still could not grow on galactose, although the strain had constitutively elevated lactose PTS activity. The glucose PTS activity of lacR mutants grown in glucose was lower than in the wild-type strain, revealing an influence of LacR or the lactose PTS on the regulation of the glucose PTS. Mutation of the lacA gene of the tagatose pathway caused impaired growth in lactose and galactose, suggesting that galactose can only be efficiently utilized when both the Leloir and tagatose pathways are functional. A mutation of the permease in the multiple sugar metabolism operon did not affect growth on galactose. Thus, the galactose permease of S. mutans is not present in the gal, lac, or msm operons.

摘要

编码Leloir途径中半乳糖激酶的galK基因在变形链球菌UA159中被插入失活。galK基因敲除菌株在半乳糖上仅表现出微弱生长,但在葡萄糖或乳糖上的生长未受影响。在UA159菌株中,乳糖的糖磷酸转移酶系统(PTS)和半乳糖的PTS在乳糖和半乳糖中生长时被诱导,尽管半乳糖PTS活性非常低,这表明变形链球菌没有半乳糖特异性PTS,并且乳糖PTS可能转运半乳糖,尽管效率很低。为了确定是否可以通过增强乳糖PTS活性来克服galK突变体的半乳糖生长缺陷,编码乳糖PTS和磷酸β-半乳糖苷酶操纵子假定阻遏物的基因lacR被插入失活。尽管该菌株的乳糖PTS活性持续升高,但galK和lacR突变体仍不能在半乳糖上生长。在葡萄糖中生长的lacR突变体的葡萄糖PTS活性低于野生型菌株,这揭示了LacR或乳糖PTS对葡萄糖PTS调节的影响。塔格糖途径的lacA基因突变导致在乳糖和半乳糖中的生长受损,这表明只有当Leloir途径和塔格糖途径都发挥作用时,半乳糖才能被有效利用。多糖代谢操纵子中通透酶的突变不影响在半乳糖上的生长。因此,变形链球菌的半乳糖通透酶不存在于gal、lac或msm操纵子中。

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