首页> 美国卫生研究院文献>Journal of Bacteriology >Molecular cloning and characterization of scrB the structural gene for the Streptococcus mutans phosphoenolpyruvate-dependent sucrose phosphotransferase system sucrose-6-phosphate hydrolase.
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Molecular cloning and characterization of scrB the structural gene for the Streptococcus mutans phosphoenolpyruvate-dependent sucrose phosphotransferase system sucrose-6-phosphate hydrolase.

机译:scrB的分子克隆和表征变形链球菌磷酸烯醇丙酮酸依赖性蔗糖磷酸转移酶系统蔗糖6-磷酸水解酶的结构基因。

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摘要

A DNA fragment encoding the sucrose-6-phosphate hydrolase component of the Streptococcus mutans phosphoenolpyruvate-dependent sucrose phosphotransferase system has been recovered from a plasmid-based genomic library of strain GS5. The locus, designated scrB, was found to reside within a 2.9-kilobase-pair restriction fragment present on the chimeric molecule pVA1343 (7.3 kilobase pairs). Minicell analysis of pVA1343-directed translation products revealed that the scrB product synthesized in Escherichia coli V1343 was a single peptide of Mr 57,000. This polypeptide was reactive with antiserum prepared against S. mutans intracellular invertase, which has been previously shown to have an Mr of 43,000 to 48,000. The basis of this difference in Mr was not established but may represent a posttranslational proteolytic event which occurred in S. mutans but not in recombinant V1343. Sucrose-6-phosphate hydrolase purified to homogeneity from V1343 exhibited Michaelis constants of 180 mM for sucrose and 0.08 mM for sucrose-6-phosphate. Deletion analysis of pVA1343 facilitated the assignment of a coding region for the hydrolase within the insert, as well as an orientation for the transcription of scrB. scrB-defective strains of S. mutans constructed by additive integration of an insertionally inactivated scrB locus exhibited the sucrose sensitivity characteristic of this mutant class. Similar loci were detected by DNA-DNA hybridization in additional strains of S. mutans and two strains of Streptococcus cricetus, but not in single strain representatives of S. rattus, S. sobrinus, S. sanguis I and II, S. salivarius, or S. mitis.
机译:已经从菌株GS5的基于质粒的基因组文库中回收了编码变形链球菌磷酸烯醇丙酮酸依赖性蔗糖磷酸转移酶系统的蔗糖6-磷酸水解酶组分的DNA片段。发现命名为scrB的基因座位于嵌合分子pVA1343(7.3千碱基对)上存在的2.9碱基对限制片段中。对pVA1343定向翻译产物的微细胞分析表明,在大肠杆菌V1343中合成的scrB产物是57,000先生的单个肽。该多肽与针对变形链球菌胞内转化酶制备的抗血清具有反应性,该抗血清先前已显示其Mr为43,000至48,000。 Mr中这种差异的基础尚未确定,但可能代表了变形链球菌中发生的翻译后蛋白水解事件,但重组V1343中没有。从V1343纯化至均一的蔗糖6-磷酸水解酶显示出米氏常数,对于蔗糖为180mM,对于蔗糖6-磷酸为0.08mM。 pVA1343的缺失分析促进了插入物中水解酶的编码区的分配以及scrB转录的方向。通过插入灭活的scrB基因座的加成整合构建的变形链球菌的scrB缺陷菌株显示出该突变体类别的蔗糖敏感性特征。通过DNA-DNA杂交在其他变形链球菌和两个链球菌菌株中检​​测到类似的基因座,但在褐葡萄球菌,sobrinus,桑氏葡萄球菌I和II,唾液链球菌或葡萄球菌。

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