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变形链球菌6715 - 13突变株27中一种不依赖引物的葡糖基转移酶的纯化与特性分析

Purification and characterization of a primer-independent glucosyltransferase from Streptococcus mutans 6715-13 mutant 27.

作者信息

McCabe M M

出版信息

Infect Immun. 1985 Dec;50(3):771-7. doi: 10.1128/iai.50.3.771-777.1985.

Abstract

Affinity chromatography on Sephadex G-50 and subsequent ion-exchange chromatography on Trisacryl-M-DEAE were used to purify the glucosyltransferase (GTF) enzymes produced by mutant 27 of Streptococcus mutans 6715-13. Complete separation of three types of GTF, including a primer-independent GTF capable of synthesizing a slightly branched, water-soluble glucan (GTF-S), was obtained. The characteristics of this primer-independent GTF-S were compared with those of the normally occurring primer-dependent GTF-S. The Km for sucrose was easily obtained for each enzyme (10(-2) M), but the Km for dextran could only be determined for the primer-dependent GTF-S (5 X 10(-7) M for clinical dextran of molecular weight 60,000 to 90,000). The primer-independent GTF-S did not respond catalytically to the presence of either clinical dextran or the highly branched, water-soluble glucan produced by primer-dependent GTF-S, although it was capable of binding these polysaccharides at a noncatalytic site and of responding to the low-molecular-weight acceptor 1-O-methyl-alpha-D-glucopyranoside. The water-soluble glucan product of primer-independent GTF-S was a superior priming glucan for primer-dependent GTF enzymes as compared with the glucan product of primer-dependent GTF-S. The presence of primer-independent GTF-S in reaction mixtures stimulated glucan synthesis by primer-dependent GTF-S and by GTF synthesizing water-insoluble glucan by at least 10-fold, whereas the presence of similar amounts of primer-dependent GTF-S had no effect on synthesis by GTF synthesizing water-insoluble glucan. Primer-independent GTF-S appears to be a potent source of priming glucan for the primer-dependent GTF enzymes. Its possession of a noncatalytic binding site for glucan, the first observed for the GTF of S. mutans, suggests that it may also serve as a glucan receptor on the S. mutans cell surface.

摘要

利用葡聚糖凝胶G - 50亲和层析及随后在三羟甲基氨基甲烷 - 二乙氨基乙基三羟甲基丙烯酸酯(Trisacryl - M - DEAE)上进行离子交换层析,对变形链球菌6715 - 13突变体27产生的葡糖基转移酶(GTF)进行纯化。实现了三种类型GTF的完全分离,其中包括一种无需引物的GTF,它能够合成一种稍有分支的水溶性葡聚糖(GTF - S)。将这种无需引物的GTF - S的特性与正常存在的需引物的GTF - S的特性进行了比较。每种酶的蔗糖米氏常数(Km)很容易得出(10⁻² M),但葡聚糖的Km仅能针对需引物的GTF - S测定(对于分子量为60,000至90,000的临床葡聚糖,Km为5×10⁻⁷ M)。尽管无需引物的GTF - S能够在非催化位点结合这些多糖并对低分子量受体1 - O - 甲基 - α - D - 吡喃葡萄糖苷产生反应,但它对临床葡聚糖或需引物的GTF - S产生的高度分支的水溶性葡聚糖的存在没有催化反应。与需引物的GTF - S的葡聚糖产物相比,无需引物的GTF - S的水溶性葡聚糖产物是需引物的GTF酶的一种更优良的引发葡聚糖。反应混合物中无需引物的GTF - S的存在使需引物的GTF - S和合成水不溶性葡聚糖的GTF的葡聚糖合成至少增加了10倍,而等量的需引物的GTF - S的存在对合成水不溶性葡聚糖的GTF的合成没有影响。无需引物的GTF - S似乎是需引物的GTF酶引发葡聚糖的一个有效来源。它拥有一个葡聚糖的非催化结合位点,这是在变形链球菌的GTF中首次观察到的,表明它也可能作为变形链球菌细胞表面的葡聚糖受体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/07e3/261147/d12f51201407/iai00111-0183-a.jpg

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