首页> 外文期刊>Frontiers in Microbiology >The rnc Gene Promotes Exopolysaccharide Synthesis and Represses the vicRKX Gene Expressions via MicroRNA-Size Small RNAs in Streptococcus mutans
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The rnc Gene Promotes Exopolysaccharide Synthesis and Represses the vicRKX Gene Expressions via MicroRNA-Size Small RNAs in Streptococcus mutans

机译:<斜视> RNC 基因促进了潜水糖合成,并通过MicroRNA尺寸的小RNA抑制了<斜体> viCrkx /斜体>基因表达,在<斜体>链球菌(Streptococcus mutans)

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Dental caries is a biofilm-dependent disease that largely relies on the ability of Streptococcus mutans to synthesize exopolysaccharides. Although the rnc gene is suggested to be involved in virulence mechanisms in many other bacteria, the information regarding it in S. mutans is very limited. Here, using deletion or overexpression mutant assay, we demonstrated that rnc in S. mutans significantly positively regulated exopolysaccharide synthesis and further altered biofilm formation. Meanwhile, the cariogenecity of S. mutans was decreased by deletion of rnc in a specific pathogen-free (SPF) rat model. Interestingly, analyzing the expression at mRNA level, we found the downstream vic locus was repressed by rnc in S. mutans . Using deep sequencing and bioinformatics analysis, for the first time, three putative microRNA-size small RNAs (msRNAs) targeting vicRKX were predicted in S. mutans . The expression levels of these msRNAs were negatively correlated with vicRKX but positively correlated with rnc , indicating rnc probably repressed vicRKX expression through msRNAs at the post-transcriptional level. In all, the results present that rnc has a potential role in the regulation of exopolysaccharide synthesis and can affect vicRKX expressions via post-transcriptional repression in S. mutans . This study provides an alternative avenue for further research aimed at preventing caries.
机译:龋齿是生物膜依赖性疾病,在很大程度上依赖于链球菌的能力来合成泛多糖。虽然建议RNC基因参与许多其他细菌中的毒力机制,但是在S. mutans中的信息非常有限。这里,使用缺失或过度表达突变体测定,我们证明了S.UM的RNC显着呈正常调节的外糖合成和进一步改变的生物膜形成。同时,在特定病原体(SPF)大鼠模型中,通过缺失RNC来降低S.Ulans的致癌性。有趣的是,分析MRNA水平的表达,我们发现下游的VIC基因座被RNC在S. mutans中被抑制。使用深度测序和生物信息学分析,第一次推定的微小RNA大小靶向viCrkx靶向viCrkx。这些MSRNA的表达水平与VICRKX呈负相关,但与RNC呈正相关,表明RNC可能通过转录后水平的MSRNA抑制VICRKX表达。总而言之,结果表明,RNC在对外多糖合成的调节中具有潜在的作用,并且可以通过转录后抑制在S. mutans的后拷贝抑制中影响ViCrkx表达。本研究为进一步研究提供了旨在预防龋齿的进一步研究提供替代途径。

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