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仓鼠链球菌葡聚糖结合凝集素的特异性

Specificity of the glucan-binding lectin of Streptococcus cricetus.

作者信息

Drake D, Taylor K G, Bleiweis A S, Doyle R J

机构信息

Department of Microbiology and Immunology, University of Louisville, Kentucky 40292.

出版信息

Infect Immun. 1988 Aug;56(8):1864-72. doi: 10.1128/iai.56.8.1864-1872.1988.

Abstract

The specificity of the glucan-binding lectin (GBL) of Streptococcus cricetus AHT was determined. Examination of the kinetics of aggregation of cell suspensions with glucans containing various percentages of alpha-1,6, alpha-1,4, alpha-1,3, and alpha-1,2 anomeric linkages revealed that only glucans with at least 80% alpha-1,6 linkages promoted strong aggregation. Moreover, only linear glucans with molecular weights greater than 5 X 10(5) were capable of causing rapid aggregation of the bacteria. The lectin was observed to be present on S. cricetus strains, on Streptococcus sobrinus, and on several Streptococcus mutants strains. Preincubation of suspensions of S. cricetus AHT with glucan T10 (molecular weight of 10,000) before the addition of high-molecular-weight glucan resulted in competitive inhibition in a concentration-dependent manner. Inhibition was achieved also with isomaltopentaose, isomaltohexaose, and isomaltooctaose, but at higher concentrations than glucan T10. In contrast, no inhibition was observed with maltoheptaose, providing additional evidence for the specificity of GBL. Treatment of suspensions of S. cricetus AHT with trypsin before and after aggregation with high-molecular-weight glucan revealed a substantial level of protection of GBL when in a bound state. Collectively, these results indicated that GBL has an absolute affinity for glucans rich in alpha-1,6 linkages and possesses an active site which recognizes internal sequences and accommodates isomaltosaccharides of at least nine residues. This unusual specificity may contribute to the colonization of S. cricetus, S. sobrinus, and S. mutans in glucan-containing plaque in the oral cavity.

摘要

测定了仓鼠链球菌AHT葡聚糖结合凝集素(GBL)的特异性。用含有不同百分比的α-1,6、α-1,4、α-1,3和α-1,2异头键的葡聚糖检测细胞悬液的聚集动力学,结果显示只有α-1,6键含量至少为80%的葡聚糖能促进强烈聚集。此外,只有分子量大于5×10⁵的线性葡聚糖才能使细菌快速聚集。观察到该凝集素存在于仓鼠链球菌菌株、远缘链球菌以及几种链球菌突变菌株上。在添加高分子量葡聚糖之前,将仓鼠链球菌AHT悬液与葡聚糖T10(分子量为10,000)预孵育,会导致浓度依赖性的竞争性抑制。异麦芽五糖、异麦芽六糖和异麦芽八糖也能产生抑制作用,但所需浓度高于葡聚糖T10。相比之下,麦芽七糖未观察到抑制作用,这为GBL的特异性提供了额外证据。在用高分子量葡聚糖聚集前后,用胰蛋白酶处理仓鼠链球菌AHT悬液,结果显示GBL处于结合状态时能得到大量保护。总体而言,这些结果表明GBL对富含α-1,6键的葡聚糖具有绝对亲和力,并且拥有一个能识别内部序列并容纳至少九个残基的异麦芽糖的活性位点。这种不寻常的特异性可能有助于仓鼠链球菌、远缘链球菌和变形链球菌在口腔含葡聚糖菌斑中的定植。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b660/259494/bffd3ab035ef/iai00080-0049-a.jpg

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