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链球菌溶血素O溶血效率和等电点的异质性

Heterogeneity of hemolytic efficiency and isoelectric point of streptolysin O.

作者信息

Suzuki J, Kobayashi S, Kagaya K, Fukazawa Y

机构信息

Department of Bioorganic Chemistry, Azabu University, Kanagawa, Japan.

出版信息

Infect Immun. 1988 Sep;56(9):2474-8. doi: 10.1128/iai.56.9.2474-2478.1988.

Abstract

Using thin-layer agarose gel isoelectric focusing overlaid with thin-layer erythrocyte agar plates, we found that crude streptolysin O (SLO) consisted of a variety of hemolytic components with different isoelectric points (pIs) and that the distribution of pIs in crude SLO was different even in samples which were produced from a single strain of Streptococcus pyogenes under similar conditions. All of the hemolytic components in crude SLO were shown to have the properties of SLO with respect to their susceptibility to oxygen and anti-SLO serum and their molecular weight. The SLO components showed a single molecular weight of 64,000, but they exhibited various pIs ranging from pH 5.4 to 8.3, with major components showing a pI of 6 and/or 7.5. Further examination revealed the slope of the hemolytic titration curve to be dissimilar among the samples of crude SLO. Since the slope of the hemolytic titration curve of a component appears to be based on its hemolytic efficiency, the value of the slope was designated its hemolytic efficiency index. When SLO was purified by isoelectric focusing, the pI of the components was correlated with its hemolytic efficiency index; hemolytic components with lower pIs exhibited a lower hemolytic efficiency index. These results indicate that SLO consists of heterogeneous components with different pIs and suggest that the differences in hemolytic efficiency indices of SLO components are due to the different electrical charges of SLO molecules, which are related to their polymerization and affect hemolytic efficiency.

摘要

通过在薄层层析红细胞琼脂平板上覆盖薄层层析琼脂糖凝胶等电聚焦法,我们发现粗制链球菌溶血素O(SLO)由多种具有不同等电点(pI)的溶血成分组成,并且即使在相似条件下由单一化脓性链球菌菌株产生的样品中,粗制SLO中pI的分布也有所不同。粗制SLO中的所有溶血成分在对氧气和抗SLO血清的敏感性以及分子量方面均显示出SLO的特性。SLO成分的单一分子量为64,000,但它们表现出从pH 5.4到8.3的各种pI,主要成分的pI为6和/或7.5。进一步检查发现,粗制SLO样品之间的溶血滴定曲线斜率不同。由于成分的溶血滴定曲线斜率似乎基于其溶血效率,因此将该斜率值指定为其溶血效率指数。当通过等电聚焦纯化SLO时,各成分的pI与其溶血效率指数相关;pI较低的溶血成分表现出较低的溶血效率指数。这些结果表明,SLO由具有不同pI的异质成分组成,并表明SLO成分溶血效率指数的差异是由于SLO分子的不同电荷所致,这些电荷与其聚合有关并影响溶血效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d996/259590/04b2f4dc02cb/iai00081-0279-a.jpg

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