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变形链球菌dexA(葡聚糖酶)基因的插入失活导致黏附及葡聚糖分解代谢改变。

Insertional inactivation of the Streptococcus mutans dexA (dextranase) gene results in altered adherence and dextran catabolism.

作者信息

Colby S M, Whiting G C, Tao L, Russell R R

机构信息

Department of Oral Biology, Dental School, University of Newcastle upon Tyne, UK.

出版信息

Microbiology (Reading). 1995 Nov;141 ( Pt 11):2929-36. doi: 10.1099/13500872-141-11-2929.

DOI:10.1099/13500872-141-11-2929
PMID:8535521
Abstract

Streptococcus mutans is able to synthesize extracellular glucans from sucrose which contribute to adherence of these bacteria. Extracellular dextranase can partially degrade the glucans, and may therefore affect virulence of S. mutans. In order to isolate mutants unable to produce dextranase, a DNA library was constructed by inserting random Sau3AI-digested fragments of chromosomal DNA from S. mutans into the BamHI site of the streptococcal integration vector pVA891, which is able to replicate in Escherichia coli but does not possess a streptococcal origin of replication. The resultant plasmids were introduced into S. mutans LT11, allowing insertional inactivation through homologous recombination. Two transformants were identified which did not possess dextranase activity. Integration of a single copy of the plasmid into the chromosome of these transformants was confirmed by Southern hybridization analysis. Chromosomal DNA fragments flanking the plasmid were recovered using a marker rescue technique, and sequenced. Comparison with known sequences using the BLASTX program showed 56% homology at the amino acid level between the sequenced gene fragment and dextranase from Streptococcus sobrinus, strongly suggesting that the S. mutans dextranase gene (dexA) had been inactivated. The colony morphology of the dextranase mutants when grown on Todd-Hewitt agar containing sucrose was altered compared to the parent strain, with an apparent build-up of extracellular polymer. The mutants were also more adherent to a smooth surface than LT11 but there was no apparent difference in sucrose-dependent cell-cell aggregation.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

变形链球菌能够利用蔗糖合成胞外葡聚糖,这有助于这些细菌的黏附。胞外葡聚糖酶可部分降解葡聚糖,因此可能影响变形链球菌的毒力。为了分离出不能产生葡聚糖酶的突变体,构建了一个DNA文库,方法是将变形链球菌染色体DNA经Sau3AI随机酶切产生的片段插入链球菌整合载体pVA891的BamHI位点,该载体能在大肠杆菌中复制,但不具有链球菌复制起点。将得到的质粒导入变形链球菌LT11,通过同源重组实现插入失活。鉴定出两个不具有葡聚糖酶活性的转化体。通过Southern杂交分析证实了质粒单拷贝整合到这些转化体的染色体中。使用标记拯救技术回收了质粒侧翼的染色体DNA片段并进行测序。使用BLASTX程序与已知序列进行比较,结果表明测序的基因片段与远缘链球菌的葡聚糖酶在氨基酸水平上有56%的同源性,强烈提示变形链球菌葡聚糖酶基因(dexA)已失活。与亲本菌株相比,葡聚糖酶突变体在含有蔗糖的托德-休伊特琼脂上生长时的菌落形态发生了改变,胞外聚合物明显积累。这些突变体也比LT11更易黏附于光滑表面,但在蔗糖依赖性细胞间聚集方面没有明显差异。(摘要截短于250词)

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