{"title":"山梨醇增加木糖醇对链球菌的生长抑制作用。变形omz176。","authors":"S Assev, G Rølla","doi":"10.1111/j.1699-0463.1986.tb03046.x","DOIUrl":null,"url":null,"abstract":"<p><p>It was observed in a previous study that the growth of Streptococcus mutans strain OMZ 176 on sorbitol was inhibited by xylitol. The aim of the present study was to investigate the mechanisms involved in this inhibition. It was shown that the uptake of 14C-sorbitol was delayed when the cells had been pre-exposed to xylitol, and that the only labelled substance found intracellularly was sorbitol; no further metabolization occurred. This is in contrast with untreated normal cells, where sorbitol is taken up by a specific phosphotransferase system (pts). The 14C-xylitol metabolism of the cells was qualitatively unchanged in the presence of sorbitol; an intracellular accumulation of 14C-xylitol-phosphate (xylitol-P) and 14C-xylulose-phosphate (xylulose-P) was observed. However, a reduced uptake of xylitol was observed in the presence of sorbitol. Xylitol thus appears to change the pathway by which sorbitol is taken up by the cells. An inducible permease may replace the normal sorbitol pts when xylitol is present. No further metabolization of this intracellular sorbitol seemed to occur in the resting cell suspensions. It was furthermore observed that the presence of sorbitol enhanced the inhibitory potential of xylitol. The accumulation of intracellular sorbitol coincided with markedly increased xylulose-P/xylitol-P ratio. It may be speculated that, if xylulose-P were the major inhibitor of the glycolysis instead of xylitol-P, as previously assumed, an increased concentration of xylulose-P induced by sorbitol could explain that sorbitol enhances the inhibition potential of xylitol. It is not evident, however, how intracellular sorbitol could affect the xylulose-P/xylitol-P ratio.</p>","PeriodicalId":7045,"journal":{"name":"Acta pathologica, microbiologica, et immunologica Scandinavica. Section B, Microbiology","volume":"94 4","pages":"231-7"},"PeriodicalIF":0.0000,"publicationDate":"1986-08-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://sci-hub-pdf.com/10.1111/j.1699-0463.1986.tb03046.x","citationCount":"11","resultStr":"{\"title\":\"Sorbitol increases the growth inhibition of xylitol on Strep. mutans OMZ 176.\",\"authors\":\"S Assev, G Rølla\",\"doi\":\"10.1111/j.1699-0463.1986.tb03046.x\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>It was observed in a previous study that the growth of Streptococcus mutans strain OMZ 176 on sorbitol was inhibited by xylitol. The aim of the present study was to investigate the mechanisms involved in this inhibition. It was shown that the uptake of 14C-sorbitol was delayed when the cells had been pre-exposed to xylitol, and that the only labelled substance found intracellularly was sorbitol; no further metabolization occurred. This is in contrast with untreated normal cells, where sorbitol is taken up by a specific phosphotransferase system (pts). The 14C-xylitol metabolism of the cells was qualitatively unchanged in the presence of sorbitol; an intracellular accumulation of 14C-xylitol-phosphate (xylitol-P) and 14C-xylulose-phosphate (xylulose-P) was observed. However, a reduced uptake of xylitol was observed in the presence of sorbitol. Xylitol thus appears to change the pathway by which sorbitol is taken up by the cells. An inducible permease may replace the normal sorbitol pts when xylitol is present. No further metabolization of this intracellular sorbitol seemed to occur in the resting cell suspensions. It was furthermore observed that the presence of sorbitol enhanced the inhibitory potential of xylitol. The accumulation of intracellular sorbitol coincided with markedly increased xylulose-P/xylitol-P ratio. It may be speculated that, if xylulose-P were the major inhibitor of the glycolysis instead of xylitol-P, as previously assumed, an increased concentration of xylulose-P induced by sorbitol could explain that sorbitol enhances the inhibition potential of xylitol. It is not evident, however, how intracellular sorbitol could affect the xylulose-P/xylitol-P ratio.</p>\",\"PeriodicalId\":7045,\"journal\":{\"name\":\"Acta pathologica, microbiologica, et immunologica Scandinavica. 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引用次数: 11
摘要
在前人的研究中发现,木糖醇可以抑制变形链球菌omz176菌株在山梨醇上的生长。本研究的目的是探讨这种抑制作用的机制。结果表明,当细胞预先暴露于木糖醇时,14c -山梨醇的摄取被延迟,细胞内发现的唯一标记物质是山梨醇;没有进一步的代谢发生。这与未经处理的正常细胞相反,山梨醇被特定的磷酸转移酶系统(pts)吸收。山梨醇存在时,细胞的14c -木糖醇代谢质量不变;观察到细胞内14c -木糖醇-磷酸(木糖醇-p)和14c -木糖糖-磷酸(木糖糖-p)的积累。然而,在山梨糖醇的存在下,木糖醇的摄取减少。因此木糖醇似乎改变了山梨糖醇被细胞吸收的途径。当木糖醇存在时,诱导性渗透酶可以取代正常的山梨糖醇。这种细胞内山梨醇的进一步代谢似乎没有发生在静息细胞悬液中。进一步观察到山梨醇的存在增强了木糖醇的抑制电位。细胞内山梨醇的积累与木糖糖- p /木糖醇- p比值的显著增加一致。可以推测,如果木糖糖- p是糖酵解的主要抑制剂,而不是木糖醇- p,如前所述,山梨醇诱导木糖糖- p浓度的增加可以解释山梨醇增强木糖醇的抑制潜力。然而,细胞内山梨糖醇如何影响木糖糖- p /木糖醇- p比率尚不清楚。
Sorbitol increases the growth inhibition of xylitol on Strep. mutans OMZ 176.
It was observed in a previous study that the growth of Streptococcus mutans strain OMZ 176 on sorbitol was inhibited by xylitol. The aim of the present study was to investigate the mechanisms involved in this inhibition. It was shown that the uptake of 14C-sorbitol was delayed when the cells had been pre-exposed to xylitol, and that the only labelled substance found intracellularly was sorbitol; no further metabolization occurred. This is in contrast with untreated normal cells, where sorbitol is taken up by a specific phosphotransferase system (pts). The 14C-xylitol metabolism of the cells was qualitatively unchanged in the presence of sorbitol; an intracellular accumulation of 14C-xylitol-phosphate (xylitol-P) and 14C-xylulose-phosphate (xylulose-P) was observed. However, a reduced uptake of xylitol was observed in the presence of sorbitol. Xylitol thus appears to change the pathway by which sorbitol is taken up by the cells. An inducible permease may replace the normal sorbitol pts when xylitol is present. No further metabolization of this intracellular sorbitol seemed to occur in the resting cell suspensions. It was furthermore observed that the presence of sorbitol enhanced the inhibitory potential of xylitol. The accumulation of intracellular sorbitol coincided with markedly increased xylulose-P/xylitol-P ratio. It may be speculated that, if xylulose-P were the major inhibitor of the glycolysis instead of xylitol-P, as previously assumed, an increased concentration of xylulose-P induced by sorbitol could explain that sorbitol enhances the inhibition potential of xylitol. It is not evident, however, how intracellular sorbitol could affect the xylulose-P/xylitol-P ratio.