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葡萄球菌杀白细胞素的作用模式:125I标记的杀白细胞素S和F组分与兔多形核白细胞的结合及杀白细胞素活性之间的关系

Mode of action of staphylococcal leukocidin: relationship between binding of 125I-labeled S and F components of leukocidin to rabbit polymorphonuclear leukocytes and leukocidin activity.

作者信息

Noda M, Kato I, Matsuda F, Hirayama T

出版信息

Infect Immun. 1981 Nov;34(2):362-7. doi: 10.1128/iai.34.2.362-367.1981.

Abstract

The binding of (125)I-labeled S component to rabbit polymorphonuclear leukocytes was found to be concentration dependent and saturable at 37 degrees C. Scatchard analysis of the binding curve gave a straight line, indicating that S component binds to a single population of sites. The dissociation constant, K(D), derived from the Scatchard plot was 5.57 x 10(-9) M, and the number of binding sites per leukocyte was calculated to be approximately 5,300. Unlabeled S component (10(-8) M) or subunit B of cholera toxin (10(-7) M) readily competed with (125)I-labeled S component binding, and the labeled S component, preincubated with ganglioside G(M1) at equimolar proportions for 5 min, lost the binding capacity to the leukocyte membranes. The binding number of (125)I-labeled F component to leukocidin-sensitive cells, such as rabbit polymorphonuclear leukocytes and the established human myelocytic leukemia cells, in the absence and in the presence of the unlabeled S component (2.1 nM), was calculated to be 50 and 1,300 molecules per cell, respectively. This increased binding of the labeled F component was time and temperature dependent. The binding number of labeled F component to other cell types comparatively insensitive to leukocidin, such as erythrocytes, adipocytes, intestinal cells, and HeLa cells, was calculated to be less than 50 molecules per cell in spite of the sufficient amount of unlabeled S component bound to their cells. These observations are consistent with the view that in rabbit leukocyte the S component, preferentially bound to the cell surface at 5,300 molecules per cell, contributes to enhance the F component binding up to about 1,300 molecules per cell and may thus play a role of synergistic action of both leukocidin components on the cell membranes in the leukocytolysis.

摘要

发现(125)I标记的S成分与兔多形核白细胞的结合呈浓度依赖性,且在37℃时可饱和。对结合曲线进行Scatchard分析得到一条直线,表明S成分与单一类别的位点结合。从Scatchard图得出的解离常数K(D)为5.57×10(-9)M,计算得出每个白细胞的结合位点数约为5300个。未标记的S成分(10(-8)M)或霍乱毒素亚基B(10(-7)M)能轻易地与(125)I标记的S成分结合竞争,并且预先以等摩尔比例与神经节苷脂G(M1)预孵育5分钟的标记S成分,失去了与白细胞膜的结合能力。计算得出,在不存在和存在未标记的S成分(2.1 nM)的情况下,(125)I标记的F成分与白细胞毒素敏感细胞(如兔多形核白细胞和已建立的人髓细胞白血病细胞)的结合数分别为每个细胞50和1300个分子。标记的F成分结合增加具有时间和温度依赖性。尽管有足够量的未标记S成分与红细胞、脂肪细胞、肠细胞和HeLa细胞等对白细胞毒素相对不敏感的其他细胞类型结合,但计算得出标记的F成分与这些细胞的结合数为每个细胞少于50个分子。这些观察结果与以下观点一致:在兔白细胞中,S成分以每个细胞5300个分子的数量优先结合于细胞表面,有助于将F成分的结合增强至每个细胞约1300个分子,因此可能在白细胞溶解过程中在细胞膜上发挥两种白细胞毒素成分的协同作用。

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