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Inhibitory effect of oolong tea polyphenols on glycosyltransferases of mutans Streptococci.

机译:乌龙茶多酚对变形链球菌糖基转移酶的抑制作用。

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摘要

Oolong tea extract (OTE) was found to inhibit the water-insoluble glucan-synthesizing enzyme, glucosyltransferase I (GTase-I), of Streptococcus sobrinus 6715. The GTase-inhibitory substance in the OTE was purified successive adsorption chromatography on Diaion HP-21 and HP-20 columns; this was followed by further purification by Sephadex LH-20 column chromatography. A major fraction that inhibited GTase activity (fraction OTF10) was obtained, and the chemical analysis of OTF10 indicated that it was a novel polymeric polyphenol compound that had a molecular weight of approximately 2,000 and differed from other tea polyphenols. Catechins and all other low-molecular-weight polyphenols except theaflavin derived from balck tea did not show significant GTase-inhibitory activities. It was found that OTE amd PTF10 markedly inhibit GTase-I and yeast alpha-glucosidase, but not salivary alpha-amylase. Various GTases purified from S. sobrinus and Streptococcus mutans were examined for inhibition by OTE and OTF10. It was determined that S. sobrinus GTase-I and S. mutans cell-free GTase synthesizing water-soluble glucan were most susceptible to the inhibitory action of OTF10, while S. sobrinus GTase-Sa and S. mutans cell-associated GTase were moderately inhibited; no inhibition of S. sobrinus GTase-Sb was observed. Inhibition of a specific GTase or specific GTases of mutants streptococci resulted in decreased adherence of the growing cells of these organisms. The inhibitory effect of OTF10 on cellular adherence was significantly stronger than that of OTE.
机译:发现乌龙茶提取物(OTE)可以抑制sobrinus sobrinus 6715的水不溶性葡聚糖合成酶葡糖基转移酶I(GTase-I)。在Diaion HP-21上通过连续吸附色谱法纯化OTE中的GTase抑制物质。和HP-20色谱柱;随后通过Sephadex LH-20柱色谱进一步纯化。获得了抑制GTase活性的主要馏分(馏分OTF10),OTF10的化学分析表明,它是一种新型的聚合多酚化合物,分子量约为2,000,与其他茶多酚不同。儿茶素类和所有其他低分子量多酚(除来自黑茶的茶黄素外)均未显示出明显的GTase抑制活性。发现OTE和PTF10显着抑制GTase-1和酵母α-葡糖苷酶,但不抑制唾液α-淀粉酶。检查了从链球菌和变形链球菌纯化的各种GTase的OTE和OTF10抑制作用。可以确定,S。sobrinus GTase-I和S. mutans无细胞的合成葡聚糖酶对OTF10的抑制作用最敏感,而S. sobrinus GTase-Sa和S. mutans细胞相关的GTase中等。抑制没有观察到对链球菌GTase-Sb的抑制。抑制链球菌突变体的特定GTase或特定GTase会导致这些生物的生长细胞粘附减少。 OTF10对细胞粘附的抑制作用明显强于OTE。

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