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首页> 外文期刊>Molecular oral microbiology >Extracellular matrix influence in Streptococcus mutans Streptococcus mutans gene expression in a cariogenic biofilm
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Extracellular matrix influence in Streptococcus mutans Streptococcus mutans gene expression in a cariogenic biofilm

机译:细胞外基质对致癌生物膜中链球菌的链球菌的影响

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摘要

Caries etiology is biofilm–diet‐dependent. Biofilms are highly dynamic and structured microbial communities enmeshed in a three‐dimensional extracellular matrix. The study evaluated the expression dynamics of Streptococcus mutans genes associated with exopolysaccharides (EPS) ( gtfBCD , gbpB , dexA ), lipoteichoic acids (LTA) ( dltABCD , SMU_775c ) and extracellular DNA (eDNA) ( lytST , lrgAB , ccpA ) during matrix development within a mixed‐species biofilm of S.?mutans , Actinomyces naeslundii and Streptococcus gordonii . Mixed‐species biofilms using S.?mutans strains UA159 or Δ gtfB formed on saliva‐coated hydroxyapatite discs were submitted to a nutritional challenge (providing an abundance of sucrose and starch). Biofilms were removed at eight developmental stages for gene expression analysis by quantitative polymerase chain reaction. The pH of spent culture media remained acidic throughout the experimental periods, being lower after sucrose and starch exposure. All genes were expressed at all biofilm developmental phases. EPS‐ and LTA‐associated genes had a similar expression profile for both biofilms, presenting lower levels of expression at 67, 91 and 115?hours and a peak of expression at 55?hours, but having distinct expression magnitudes, with lower values for Δ gtfB (eg, fold‐difference of ~382 for gtfC and ~16 for dltB at 43?hours). The eDNA‐associated genes presented different dynamics of expression between both strains. In UA159 biofilms lrgA and lrgB genes were highly expressed at 29?hours (which were ~13 and ~5.4 times vs Δ gtfB , respectively), whereas in Δ gtfB biofilms an inverse relationship between lytS and lrgA and lrgB expression was detected. Therefore, the deletion of gtfB influences dynamics and magnitude of expression of genes associated with matrix main components.
机译:龋病病因是生物膜饮食依赖性。生物膜是高度动态和结构的微生物群落,旨在三维细胞外基质。该研究评估了与基质开发期间与外核糖(EPS)(EPS)(EPS)(EPS)(GTFBCD,GBPB,DEXA),脂肪酸酯(LTA)(DLTABCD,SMU_75C)和细胞外DNA(eDNA)(LYTST,LRGAB,CCPA)相关的链球菌(GTFBCD,GBPB,DEXA)和细胞外DNA(LYTST,LRGGAB,CCPA)的表达动态在S.?mutans的混合物种生物膜内,Altinomyces Neeslundii和肺炎心脏病。混合物种生物膜使用S.?培养物菌株UA159或δGTFB在唾液涂覆的羟基磷灰石盘上提交至营养挑战(提供丰富的蔗糖和淀粉)。通过定量聚合酶链式反应在8个发育阶段中除去生物膜,以进行基因表达分析。在蔗糖和淀粉暴露后,在整个实验期内酸性培养培养基的pH保持酸性。所有基因在所有生物膜发育阶段表达。 EPS和LTA相关基因对于生物膜具有类似的表达谱,呈现在67,91和115℃下的较低水平的表达水平和55?小时的表达峰,但具有明显的表达幅度,具有较低的值Δ GTFB(例如,GTFC的〜382的折叠差异为43Ω小时的DLTB的〜16)。 EDNA相关基因呈现了两种菌株之间的表达的不同动态。在UA159中,生物膜LRGA和LRGB基因在29?小时(分别为〜13〜5.4倍,而在ΔGTFB生物膜中,检测到LYTS和LRGA与LRGB表达之间的反相关系。因此,GTFB的缺失影响与基质主要成分相关的基因表达的动态和大小。

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