首页> 外文期刊>Microbiology >Inactivation of the ptsI gene encoding enzyme I of the sugar phosphotransferase system of Streptococcus salivarius: effects on growth and urease expression
【24h】

Inactivation of the ptsI gene encoding enzyme I of the sugar phosphotransferase system of Streptococcus salivarius: effects on growth and urease expression

机译:编码链球菌糖分子糖分子系统酶I的PTSI基因I的失活:对生长和脲酶表达的影响

获取原文
           

摘要

The urease genes of Streptococcus salivarius 57.I are tightly repressed in cells growing at neutral pH. When cells are cultivated at acidic pH values, the urease genes become derepressed and transcription is enhanced when cells are growing under carbohydrate-excess conditions. Previously, the authors proposed that the bacterial sugar:phosphotransferase system (PTS) modulated the DNA-binding activity by phosphorylation of the urease repressor when carbohydrate was limiting. The purpose of this study was to assess whether enzyme I (EI) of the PTS could be involved in modulating urease expression in response to carbohydrate availability. An EI-deficient strain (ptsI18-3) of S. salivarius 57.I was constructed by insertional inactivation of the ptsI gene. The mutant had no measurable PTS activity and lacked EI, as assessed by Western analysis. The mutant grew as well as the wild-type strain on the non-PTS sugar lactose, and grew better than the parent when another non-PTS sugar, galactose, was the sole carbohydrate. The mutant was able to grow with glucose as the sole carbohydrate, but displayed a 24 h lag time and had a generation time some threefold longer than strain 57.I. The mean OD600 attained after 48?h by ptsI18-3 supplied with fructose was 0·16, with no additional growth observed even after 3?d. Urease expression in the wild-type and mutant strains was assessed in continuous chemostat culture. Repression of urease at neutral pH was seen in both strains under all conditions tested. Growth of wild-type cells on limiting concentrations of lactose resulted in very low levels of urease expression compared with growth on PTS sugars. In contrast, under similar conditions, urease expression in ptsI18-3 was restored to levels seen in the parent growing on PTS sugars. Growth under conditions of lactose excess resulted in further derepression of urease, but ptsI18-3 expressed about threefold higher urease activity than 57.I. The results support a role for EI in urease regulation, but also indicate that additional factors may be important in regulating urease gene expression.
机译:链球菌唾液57.i的脲酶基因在生长在中性pH下的细胞中被紧密抑制。当细胞在酸性pH值下培养时,当细胞在碳水化合物过量的条件下,当细胞生长时,脲酶基因变得大规则,转录。此前,作者提出了细菌糖:磷酸转移酶系统(PTS)通过碳水化合物限制时通过释放释放释放的DNA结合活性来调节DNA结合活性。本研究的目的是评估PTS是否可以参与调节尿素表达的酶I(EI)响应碳水化合物可用性。通过插入PTSI基因的灭活来构建S.Saivarius 57.i的EI缺陷菌株(PTSI18-3)。如西部分析评估,突变体没有可测量的PTS活性并缺乏EI。突变体在非Pts糖乳糖上增长以及野生型菌株,并且在另一种非Pts糖,半乳糖是唯一的碳水化合物时比父母更好。突变体能够用葡萄糖生长作为唯一的碳水化合物,但展示了24小时的滞后时间,并且产生的时间超过57.I的菌株长度超过30倍。通过果糖供应的PTSI18-3以后获得的平均OD600为0·16,甚至在3℃后均未观察到额外的生长。在连续的化疗培养培养中评估野生型和突变菌株中的脲酶表达。在所有条件下,在两种菌株中都可以在所有条件下检测到中性pH下的泌尿释放。与PTS糖的生长相比,野生型细胞对限制乳糖浓度的血液浓度的生长产生了非常低的脲酶表达。相反,在类似的条件下,PTSI18-3中的脲酶表达被恢复到父母生长在PTS糖中的水平。乳糖过量条件下的生长导致进一步放弃的脲酶,但PTSI18-3表达了比57.I的三倍高的尿素活性。结果支持急性调节中EI的作用,也表明额外的因素对于调节脲酶基因表达可能是重要的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号