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变形链球菌葡聚糖结合蛋白C中葡聚糖结合结构域的特性分析。

Characterization of the dextran-binding domain in the glucan-binding protein C of Streptococcus mutans.

作者信息

Takashima Y, Fujita K, Ardin A C, Nagayama K, Nomura R, Nakano K, Matsumoto-Nakano M

机构信息

Department of Pediatric Dentistry, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Kita-ku, Okayama, Japan.

Department of Pediatric Dentistry, Osaka University Graduate School of Dentistry, Suita, Osaka, Japan.

出版信息

J Appl Microbiol. 2015 Oct;119(4):1148-57. doi: 10.1111/jam.12895. Epub 2015 Sep 8.

Abstract

AIMS

Streptococcus mutans produces multiple glucan-binding proteins (Gbps), among which GbpC encoded by the gbpC gene is known to be a cell-surface-associated protein involved in dextran-induced aggregation. The purpose of the present study was to characterize the dextran-binding domain of GbpC using bioinformatics analysis and molecular techniques.

METHODS AND RESULTS

Bioinformatics analysis specified five possible regions containing molecular binding sites termed GB1 through GB5. Next, truncated recombinant GbpC (rGbpC) encoding each region was produced using a protein expression vector and five deletion mutant strains were generated, termed CDGB1 through CDGB5 respectively. The dextran-binding rates of truncated rGbpC that included the GB1, GB3, GB4 and GB5 regions in the upstream sequences were higher than that of the construct containing GB2 in the downstream region. In addition, the rates of dextran-binding for strains CDGB4 and CD1, which was entire gbpC deletion mutant, were significantly lower than for the other strains, while those of all other deletion mutants were quite similar to that of the parental strain MT8148. Biofilm structures formed by CDGB4 and CD1 were not as pronounced as that of MT8148, while those formed by other strains had greater density as compared to that of CD1.

CONCLUSION

Our results suggest that the dextran-binding domain may be located in the GB4 region in the interior of the gbpC gene.

SIGNIFICANCE AND IMPACT OF THE STUDY

Bioinformatics analysis is useful for determination of functional domains in many bacterial species.

摘要

目的

变形链球菌产生多种葡聚糖结合蛋白(Gbps),其中由gbpC基因编码的GbpC是一种与细胞表面相关的蛋白,参与葡聚糖诱导的聚集。本研究的目的是利用生物信息学分析和分子技术对GbpC的葡聚糖结合结构域进行表征。

方法与结果

生物信息学分析确定了五个可能包含分子结合位点的区域,称为GB1至GB5。接下来,使用蛋白质表达载体产生编码每个区域的截短重组GbpC(rGbpC),并产生了五个缺失突变菌株,分别称为CDGB1至CDGB5。在上游序列中包含GB1、GB3、GB4和GB5区域的截短rGbpC的葡聚糖结合率高于下游区域包含GB2的构建体。此外,CDGB4菌株和完全缺失gbpC的突变菌株CD1的葡聚糖结合率明显低于其他菌株,而所有其他缺失突变菌株的葡聚糖结合率与亲本菌株MT8148相当。CDGB4和CD1形成的生物膜结构不如MT8148明显,而其他菌株形成的生物膜结构与CD1相比密度更大。

结论

我们的结果表明,葡聚糖结合结构域可能位于gbpC基因内部的GB4区域。

研究的意义和影响

生物信息学分析有助于确定许多细菌物种中的功能结构域。

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