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Polypeptides associated with tufts of cell-surface fibrils in an oral Streptococcus

机译:与口腔链球菌中细胞表面原纤维的簇相关的多肽

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Summary: Cells of the oral bacterium Streptococcus oralis CN3410 produce lateral tufts of cell-surface fibrils of two lengths. Treatment of cells with trypsin resulted in loss of the tufts and release of longer fibrils intact. SDS-PAGE analysis of trypsin extracts containing fibrils revealed two groups of high molecular mass polypeptides which were denoted group A (molecular mass 227-246 kDa) and group B (molecular mass 175-208 kDa). Antibodies were raised to these two groups of trypsin-extracted polypeptides (TEPs) and to purified fibrils, and the reactivities of the three different antisera were found to be similar both on nitrocellulose blots of cell-surface polypeptides and in ELISA with whole cells. Similar patterns of TEPs were obtained from cells of a spontaneously derived mutant strain, KP34V, which lacked the short fibril components of tufts. Cells of strain KP34V had similar cell-surface hydrophobicity to strain CN3410 cells, and adhered to the same extent to parotid salivary pellicle or human buccal epithelial cells (BECs) as the wild-type cells. Trypsin treatment of strain CN3410 cells abolished their surface hydrophobicity and ability to adhere to BECs, but did not affect streptococcal cell binding to experimental salivary pellicle. Antibodies to TEPs or fibrils had no effect on cell adhesion to BECs or salivary pellicle. The results imply that the short fibril components of tufts are not involved in the cell adhesion properties tested. It is suggested that the TEPs are components of long fibrils, but they are not determinants of streptococcal cell adhesion to pellicle or to epithelial cells.
机译:发明内容:口腔细菌链球菌的细胞CN3410产生两个长度的细胞表面原纤维的横向簇。用胰蛋白酶治疗细胞导致簇的损失,并且完整地释放了更长的原纤维。含有原纤维的胰蛋白酶提取物的SDS-PAGE分析显示了两组高分子质量多肽,其表示a(分子量227-246kDa)和B组(分子量175-208kDa)。将抗体升至这两组胰蛋白酶提取的多肽(TEP)和纯化的原纤维,并且发现三种不同的抗血清的反应性在细胞表面多肽和ELISA中的硝酸纤维素墨水和全细胞类似。从自发衍生的突变菌株,KP34V的细胞中获得类似TEP的模式,其缺乏簇的短纤维组分。菌株KP34V的细胞具有与菌株CN3410细胞相似的细胞表面疏水性,并粘附到与野生型细胞中的腮腺唾液薄膜或人颊上皮细胞(BECS)相同的程度。胰蛋白酶治疗菌株CN3410细胞废除了它们的表面疏水性和粘附的能力,但不影响与实验性唾液薄膜结合的链球菌细胞。对TEPS或FIBRILS的抗体对BECS或唾液薄膜的细胞粘附没有影响。结果意味着簇的短纤维组分不参与测试的细胞粘附性能。建议TEP是长纤维的组分,但它们不是对薄膜或上皮细胞的链球菌细胞粘附的决定因素。

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