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Characterization of acid-tolerance-associated small RNAs in clinical isolates of Streptococcus mutans: Potential biomarkers for caries prevention

机译:链球菌临床分离物中酸性耐受相关小RNA的表征:龋齿预防潜在的生物标志物

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Streptococcus mutans is a cariogenic bacterium that contributes to dental caries due to its ability to produce lactic acid, which acidifies the local environment. The potential of S. mutans to respond to environmental stress and tolerate low pH is essential for its survival and predominance in caries lesions. Small noncoding RNAs (sRNAs) have been reported to be involved in bacterial stress and virulence. Few studies have investigated the sRNAs of S. mutans and the function of these sRNAs remains to be elucidated. In the present study, the association between sRNA133474 and acid tolerance, including potential underlying mechanisms, were investigated within clinical strains of S. mutans. From pediatric dental plaques, 20 strains of S. mutans were isolated. An acid killing assay was performed to analyze acid tolerance of S. mutans. Expression patterns of sRNA133474 were investigated during various growth phases under various acidic conditions via reverse transcription-quantitative polymerase chain reaction. RNA predator and Kyoto Encyclopedia of Genes and Genomes analyses were performed to predict target mRNAs of sRNA133474 and to examine the involvement of putative pathways of target mRNAs, respectively. The results of the present study demonstrated that sRNA133474 activity was growth phase-dependent, and two distinct expression patterns were identified in 10 clinical strains. At pH 5.5 and 7.5 the expression levels of sRNA133474 were significantly different, and high-acid tolerant strains exhibited reduced expression levels of sRNA133474 compared with low-acid tolerant strains. A correlation between sRNA133474 expression levels and acid tolerance was observed in 20 clinical isolates of S. mutans (r=-0.6298, P0.01). Finally, five target mRNAs (liaS, liaR, comE, covR and ciaR) involved in the two-component system (TCS) were selected for further evaluation; the expression levels of three target mRNAs (liaR, ciaR and covR) were negatively correlated with sRNA133474 expression levels. In conclusion, the results of the present study suggested that S. mutans may utilize sRNA133474 to orchestrate TCSs for optimal adaption to acidic pH in clinical strains.
机译:细菌球菌是一种致癌细菌,由于其生产乳酸的能力而导致龋齿,其酸化局部环境。 S. mutans对环境应激和耐受低pH值的潜力对于其在龋病病变中的存活和优势至关重要。据报道,据报道小型非致rNA(SRNA)参与细菌应激和毒力。少数研究研究了S.Ulans的SRNA,并且这些SRNA的功能仍有待阐明。在本研究中,在S. mutans的临床菌株内研究了SRNA133474和包括潜在潜在的潜在机制的耐酸性。来自儿科牙科斑块,分离出20株调质量。进行酸性杀死测定以分析S. mutans的耐酸性。通过逆转录定量聚合酶链反应在各种酸性条件下在各种生长相期间研究SRNA133474的表达模式。进行RNA捕食者和京都基因组和基因组分析以预测SRNA133474的靶MRNA,并分别涉及靶MRNA的推定途径的累积。本研究的结果证明了SRNA133474活性依赖于生长相位,并且在10个临床菌株中鉴定了两种不同的表达模式。在pH 5.5和7.5,SRNA133474的表达水平显着差异,并且与低酸耐受菌株相比,高酸性耐受性菌株表现出SRNA133474的表达水平。在20例临床分离物中观察到SRNA133474表达水平和酸耐受性之间的相关性(R = -0.6298,P <0.01)。最后,选择了参与双组分系统(TCS)的五个目标MRNA(LAS,骗子,CI,COVR和CIC)进行进一步评估;三个靶mRNA(骗子,CIAR和COVR)的表达水平与SRNA133474表达水平负相关。总之,本研究的结果表明,S. mutans可以利用SRNA133474来协调TCS,以便在临床菌株中最佳地适应酸性pH。

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