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通过水相双相系统中的交叉分配和疏水亲和分配测定革兰氏阳性球菌的等电点和表面疏水性。

Isoelectric points and surface hydrophobicity of Gram-positive cocci as determined by cross-partition and hydrophobic affinity partition in aqueous two-phase systems.

作者信息

Miörner H, Albertsson P A, Kronvall G

出版信息

Infect Immun. 1982 Apr;36(1):227-34. doi: 10.1128/iai.36.1.227-234.1982.

Abstract

Thirty-nine streptococcal strains belonging to groups A, C, and G and 12 staphylococcal strains were investigated with respect to surface charge and hydrophobicity. Isoelectric points of the bacteria were determined by cross-partition experiments in dextran-polyethylene glycol two-phase systems containing charged polymers. The results obtained indicate that group A, C, and G streptococci have isoelectric points of pH 3.75 +/- 0.15 standard deviation. Staphylococci show an isoelectric point of around pH 2 and thereby differ markedly from the streptococci. Pretreatment of bacteria with human serum resulted in a significant change in the isoelectric points of streptococci. In a second series of experiments, an aqueous dextran-polyethylene glycol two-phase system containing polyethylene glycol palmitate or stearate was used to study the hydrophobic surface properties of the bacterial cells. The partition of the staphylococci was not influenced by the addition of up to 1% (wt/wt) polyethylene glycol palmitate or stearate, whereas the streptococci showed a large variation in affinity for polyethylene glycol-bound hydrophobic groups. The bacterial strains included in the study were also tested for uptake of human serum proteins. A positive correlation was found between the hydrophobic affinity of group A streptococci and the density of receptors for aggregated beta-2-microglobulin.

摘要

对39株A、C和G组链球菌菌株以及12株葡萄球菌菌株进行了表面电荷和疏水性研究。通过在含有带电聚合物的葡聚糖-聚乙二醇双相系统中进行交叉分配实验来测定细菌的等电点。所得结果表明,A、C和G组链球菌的等电点为pH 3.75±0.15(标准差)。葡萄球菌的等电点约为pH 2,因此与链球菌有显著差异。用人血清对细菌进行预处理导致链球菌的等电点发生显著变化。在第二系列实验中,使用含有聚乙二醇棕榈酸酯或硬脂酸酯的葡聚糖-聚乙二醇水相双相系统来研究细菌细胞的疏水表面特性。添加高达1%(重量/重量)的聚乙二醇棕榈酸酯或硬脂酸酯对葡萄球菌的分配没有影响,而链球菌对聚乙二醇结合的疏水基团的亲和力则有很大差异。研究中纳入的细菌菌株也进行了人血清蛋白摄取测试。发现A组链球菌的疏水亲和力与聚集的β-2-微球蛋白受体密度之间存在正相关。

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