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论文摘要

变形链球菌高毒力株特异DNA片段的序列测定及生物信息学分析

Sequencing and Bioinformatical Analysis of Virulent Strain-specific DNA Fragments from Streptococcus mutans

作者:郭丽宏;史俊南

Author:GUO Li-hong1, SHI Jun-nan2

收稿日期:2006-12-25          年卷(期)页码:2006,24(06):541-

期刊名称:华西口腔医学杂志

Journal Name:West China Journal of Stomatology

关键字:变形链球菌,测序,生物信息学,相似性检索,

Key words:Streptococcusmutans,sequencing,bioinformatics,homologysearch,

基金项目:

国家自然科学基金资助项目(30271417);北京市自然科学基金资助项目(7042035)

中文摘要

目的 将筛选得到的变形链球菌高毒力株特异的DNA片段序列与数据库中已知序列进行对比,发现高毒力株特异的新基因或已知基因的新功能,推测、鉴定基因所编码蛋 白质的功能。方法 对筛选得到的c血清型变形链球菌高毒力株特异的31个DNA片段进行序列测定,利用BLAST 2.2.6程序进行核苷酸和含6相位阅读框架编码的氨基酸的相似性检索。结果 变形链球菌高毒力株特异的31个DNA片段中,2个为重复克隆,片段大小在113~776 bp之间,平均G+C含量为38.59%,与已完成测序的变形链球菌UA159基因编码区的G+C含量相近。发现了5个新的基因片段,其余的片段均与变形链球菌UA159基因组中的基因有高度的同源性。依据推测的功能,高毒力株特异的DNA片段主要与信号转导及转录调节、修复应激损伤、生化代谢、外膜蛋白合成及粘附以及目前功能仍未知或不确定的假想蛋白有关。结论 利用生物信息学相关软件及数据库进行c血清型变形链球菌高毒力株特异DNA片段的基因分析、识别及功能预测,发现了5个新的基因片段以及高毒力株特异的DNA片段的主要功能,为进一步的基因功能研究奠定基础。

英文摘要

Objective To search the DNA sequences specific to virulent strain of Streptococcus mutans in the public database and explore new genes or new functions of

already known genes from Streptococcus mutans of serotype c and suppose their functions. Methods Thirty-one DNA fragments unique to virulent strain of Streptococcus mutans were sequenced. The sequences of these presumptive virulence DNA fragments were subjected to search through software BLASTn and BLASTx in public database, and their putative biological functions were analyzed. Results Two clones were picked repeatedly. The size of the remaining DNA fragments ranged from 113 bp to 776 bp. The average G+C content was 38.59%, similar to that of the gene-coding sequences in Streptococcus mutans strain UA159 whose genome sequences were just complete. Of the twenty-nine DNA fragments, five potentially represented new DNA fragments in Streptococcus mutans, thus registered and obtained their gene′ s accession number in GenBank. The remaining DNA fragments showed high homology to known genes of Streptococcus mutans strain UA159. Their predicted functions of these fragments were associated to bacterial signal transduction, transcriptional regulation, stress-damage repair, biochemical metabolism, outer membrane protein synthesis, adhesion on tooth surface and hypothetical proteins. Conclusion The gene analysis, identification and functional forecasting were carried out through bioinformatics associated software and database to find out new genes and new functions of known genes, and to supply the groundwork for researches in gene functions.

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