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变形链球菌GS-5及一种细胞外多糖突变株中蔗糖酶的超微结构定位:一项比较细胞化学和免疫细胞化学研究

Ultrastructural localization of sucrases in Streptococcus mutans GS-5 and an extracellular polysaccharide mutant: a comparative cytochemical and immunocytochemical study.

作者信息

Bozzola J J, Johnson M C, Shechmeister I L

出版信息

Infect Immun. 1977 Aug;17(2):447-57. doi: 10.1128/iai.17.2.447-457.1977.

Abstract

Electron microscopy and cytochemical and immunocytochemical procedures were used to study the ultrastructural distribution of sucrase enzymes in two strains of Streptococcus mutans. In a strongly adherent and virulent parent strain, GS-5, most of the invertase and fructosyltransferase activities were demonstrated extracellularly or bound to the cell surfaces. Intracellularly, enzymatic sites were detected near the plasma membrane on the periphery of the nucleoid and central mesosome. In GS-511, a mutant of diminished virulence and adherence, most of the enzymatic activity was not located on the cell surfaces, but was found away from the cell walls and associated with extracellular polysaccharides. Intracellularly, GS-511 manifested the same distribution of invertase and fructosyltransferase as did GS-5; however, the close association of these enzymes with the plasma membrane was not shown in GS-511. In both strains, extracellular areas near regions associated with cross wall formation appeared to show localized concentrations of these sucrases. Antibodies against partially purified glucosyltransferase (GTF) enzymes from GS-5 were used to localize GTF by immunocytochemical techniques. Indirect ferritin localization procedures showed that the extracellular and cell-bound GTF enzymes were distributed in similar locations as the fructosyltransferase and invertase enzymes. By absorption of the antiserum with whole GS-511 cells, the location of extracellular GTF and surface antigens unique to GS-5 was demonstrated. The dramatically reduced levels of cell-bound sucrase activity in GS-511 indicates the significant role of these enzymes in adherence and cariogenicity.

摘要

运用电子显微镜技术以及细胞化学和免疫细胞化学方法,研究了变形链球菌两株菌株中蔗糖酶的超微结构分布。在强黏附性且具毒性的亲本菌株GS - 5中,大部分转化酶和果糖基转移酶活性显示于细胞外或与细胞表面结合。在细胞内,酶位点在类核和中央中体周边的质膜附近被检测到。在GS - 511中,这是一株毒力和黏附性降低的突变株,大部分酶活性并非位于细胞表面,而是在远离细胞壁处被发现,并与细胞外多糖相关。在细胞内,GS - 511中转化酶和果糖基转移酶的分布与GS - 5相同;然而,在GS - 511中未显示这些酶与质膜的紧密关联。在两株菌株中,与横壁形成相关区域附近的细胞外区域似乎显示出这些蔗糖酶的局部集中。使用针对GS - 5中部分纯化的葡糖基转移酶(GTF)的抗体,通过免疫细胞化学技术对GTF进行定位。间接铁蛋白定位程序表明,细胞外和细胞结合的GTF酶与果糖基转移酶和转化酶的分布位置相似。通过用完整的GS - 511细胞吸收抗血清,证明了细胞外GTF和GS - 5特有的表面抗原的位置。GS - 511中细胞结合的蔗糖酶活性显著降低,表明这些酶在黏附性和致龋性中起重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5321/421141/eb9c62d31241/iai00212-0212-a.jpg

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