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首页> 外文期刊>Archives of Biochemistry and Biophysics >Proton-pumping F-ATPase plays an important role in Streptococcus mutans under acidic conditions
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Proton-pumping F-ATPase plays an important role in Streptococcus mutans under acidic conditions

机译:质子泵送F-ATP酶在酸性条件下在链球菌异常中起重要作用

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Streptococcus mutans, a bacterium mainly inhabiting the tooth surface, is a major pathogen of dental caries. The bacterium metabolizes sugars to produce acids, resulting in an acidic microenvironment in the dental plaque. Hence, S. mutans should possess a mechanism for surviving under acidic conditions. In the current study, we report the effects of inhibitors of Escherichia coil proton-pumping F-type ATPase (F-ATPase) on the activity of S. mutans enzyme, and the growth and survival of S. mutans under acidic conditions. Piceatannol, curcumin, and demethoxycurcumin strongly reduced the ATPase activity of S. mutans F-ATPase. Interestingly, these compounds inhibited the growth of S. mutans at pH 5.3 but not at pH 7.3. They also significantly reduced the colony-forming ability of S. mutans after incubation at pH 4.3, while showing essentially no effect at pH 7.3. These observations indicate that S. mutans is highly sensitive to F-ATPase inhibitors under acidic conditions and that F-ATPase plays an important role in acid tolerance of this bacterium.
机译:链球菌,一种主要居住在牙表面的细菌,是龋齿的主要病原体。细菌代谢糖以产生酸,导致牙菌斑中的酸性微环境。因此,S.Ulans应该具有在酸性条件下存活的机制。在目前的研究中,我们报告了大肠杆菌泵型泵浦F型ATP酶(F-ATP酶)对酸性条件下的S. mutans酶活性的活性和生长和存活的影响。 Piceatannol,姜黄素和去甲氧杂菌型蛋白强烈地降低了S.ulans F-ATP酶的ATP酶活性。有趣的是,这些化合物抑制了在pH5.3处的S. mutans的生长但不在pH 7.3时。在pH 4.3孵育后,它们也显着降低了S. mutans的菌落形成能力,同时显示在pH7.3的基本上没有影响。这些观察结果表明,在酸性条件下,S. mutans对F-ATP酶抑制剂非常敏感,并且F-ATP酶在该细菌的酸性耐受中起重要作用。

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