Jenkinson H F, Terry S D, McNab R, Tannock G W
Department of Oral Biology and Oral Pathology, University of Otago, Dunedin, New Zealand.
Infect Immun. 1993 Aug;61(8):3199-208. doi: 10.1128/iai.61.8.3199-3208.1993.
Cell surface protein SSP-5 in the oral bacterium Streptococcus gordonii M5 binds human salivary agglutinin in a Ca(2+)-dependent reaction (D.R. Demuth, E.E. Golub, and D. Malamud, J. Biol. Chem. 265:7120-7126, 1990). The region of the gene encoding an N-terminal segment of a related polypeptide (SspA) in S. gordonii DL1 (Challis) was isolated following polymerase chain reaction amplification of genomic DNA. The sspA gene in S. gordonii DL1 was insertionally inactivated by homologous recombination of the erythromycin resistance (Emr) determinant ermAM onto the streptococcal chromosome. The SspA polypeptide (apparent molecular mass, 210 kDa) was detected on Western blots (immunoblots) of spheroplast extracts and extracellular culture medium proteins from wild-type strain DL1 but was absent from Emr mutants. One SspA- mutant (designated OB220) was not altered in rate or extent of aggregation by whole saliva or parotid saliva but showed reduced aggregation in the presence of purified salivary agglutinin. Mutant bacteria were unaffected in their ability to adhere to hydroxylapatite beads coated with whole or parotid saliva and were unaltered in cell surface hydrophobicity. However, the SspA- strain OB220 was deficient in binding salivary agglutinin and in binding to six strains of Actinomyces naeslundii. Therefore, expression of SspA polypeptide in S. gordonii is associated with both agglutinin-dependent and agglutinin-independent aggregation and adherence reactions of streptococcal cells.
口腔细菌戈登氏链球菌M5中的细胞表面蛋白SSP-5在Ca(2+)依赖性反应中与人唾液凝集素结合(D.R. 德穆斯、E.E. 戈卢布和D. 马拉穆德,《生物化学杂志》265:7120 - 7126,1990年)。在对基因组DNA进行聚合酶链反应扩增后,分离出了戈登氏链球菌DL1(查利斯)中编码相关多肽(SspA)N端片段的基因区域。通过将红霉素抗性(Emr)决定簇ermAM同源重组到链球菌染色体上,使戈登氏链球菌DL1中的sspA基因发生插入失活。在野生型菌株DL1的原生质球提取物和细胞外培养基蛋白的蛋白质印迹(免疫印迹)上检测到了SspA多肽(表观分子量为210 kDa),但在Emr突变体中未检测到。一个SspA突变体(命名为OB220)在全唾液或腮腺唾液诱导的聚集速率或程度上没有改变,但在存在纯化的唾液凝集素时聚集减少。突变细菌在粘附到涂有全唾液或腮腺唾液的羟基磷灰石珠上的能力方面没有受到影响,并且细胞表面疏水性也没有改变。然而,SspA缺陷菌株OB220在结合唾液凝集素和结合六种内氏放线菌菌株方面存在缺陷。因此,戈登氏链球菌中SspA多肽的表达与链球菌细胞的凝集素依赖性和凝集素非依赖性聚集及粘附反应有关。