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Analysis of Small RNAs in Streptococcus mutans under Acid Stress—A New Insight for Caries Research

机译:酸胁迫下变形链球菌中小RNA的分析—龋病研究的新见解

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摘要

Streptococcus mutans (S. mutans) is the major clinical pathogen responsible for dental caries. Its acid tolerance has been identified as a significant virulence factor for its survival and cariogenicity in acidic conditions. Small RNAs (sRNAs) are recognized as key regulators of virulence and stress adaptation. Here, we constructed three libraries of sRNAs with small size exposed to acidic conditions for the first time, followed by verification using qRT-PCR. The levels of two sRNAs and target genes predicted to be bioinformatically related to acid tolerance were further evaluated under different acid stress conditions (pH 7.5, 6.5, 5.5, and 4.5) at three time points (0.5, 1, and 2 h). Meanwhile, bacterial growth characteristics and vitality were assessed. We obtained 1879 sRNAs with read counts of at least 100. One hundred and ten sRNAs were perfectly mapped to reported msRNAs in S. mutans. Ten out of 18 sRNAs were validated by qRT-PCR. The survival of bacteria declined as the acid was increased from pH 7.5 to 4.5 at each time point. The bacteria can proliferate under each pH except pH 4.5 with time. The levels of sRNAs gradually decreased from pH 7.5 to 5.5, and slightly increased in pH 4.5; however, the expression levels of target mRNAs were up-regulated in acidic conditions than in pH 7.5. These results indicate that some sRNAs are specially induced at acid stress conditions, involving acid adaptation, and provide a new insight into exploring the complex acid tolerance for S. mutans.
机译:变形链球菌(变形链球菌)是引起龋齿的主要临床病原体。它的耐酸性已被确定为在酸性条件下生存和致龋性的重要毒力因子。小RNA(sRNA)被认为是毒力和压力适应的关键调节因子。在这里,我们首次构建了三个小尺寸的sRNA的文库,这些文库首次暴露于酸性条件,然后使用qRT-PCR进行验证。在不同的酸胁迫条件下(pH 7.5、6.5、5.5和4.5)在三个时间点(0.5、1和2 h),进一步评估了两个与预期的生物信息学上与耐酸性相关的sRNA和靶基因的水平。同时,评估细菌的生长特征和活力。我们获得了1879个sRNA,读取计数至少为100。将110个sRNA完美映射到变形链球菌中报道的msRNA上。通过qRT-PCR验证了18种sRNA中的10种。随着酸在每个时间点从7.5升高到4.5,细菌的存活率下降。细菌可以在除pH 4.5以外的每个pH下随时间增殖。 sRNA的水平从pH 7.5逐渐降低至5.5,而在pH 4.5则略有增加;然而,酸性条件比pH 7.5上调了靶mRNA的表达水平。这些结果表明,某些sRNA在酸胁迫条件下被特殊诱导,涉及酸适应性,为探索变形链球菌的复杂耐酸性提供了新的见识。

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