Kuykindoll R J, Holt R G
Department of Microbiology, Meharry Medical College, Nashville, Tennessee 37208, USA.
Infect Immun. 1996 Sep;64(9):3652-8. doi: 10.1128/iai.64.9.3652-3658.1996.
The Streptococcus sobrinus SpaA protein and the Streptococcus mutans P1 protein share 66% sequence homology at the amino acid level. To determine if the SpaA protein can be expressed in S. mutans and functionally replace the P1 protein, the spaA gene of S. sobrinus 6715 was isolated from plasmid pX1303 and inserted into the Escherichia coli-Streptococcus shuttle vector pVA838. The resulting plasmid pX1600 was transformed into the P1-deficient strain S. mutans 834 that has defects in saliva-mediated aggregation and in the ability to adhere to saliva-coated hydroxyapatite surfaces. Western blot (immunoblot) analysis of cellular protein fractions of S. mutans 834 (pX1600) detected in mutanolysin-solubilized cell walls a major protein of 210 kDa with an electrophoretic mobility similar to that of S. sobrinus SpaA protein and a minor 210-kDa protein and a major 64-kDa protein in the extracellular protein fraction. Analysis of virulence traits showed that expression of SpaA protein by S. mutans 834(pX1600) cells had restored the ability of the S. mutans 834 cells to aggregate in the presence of saliva or salivary agglutinin but not to adhere to saliva-coated hydroxyapatite. This cell aggregation was inhibited specifically by antisera to S. sobrinus SpaA protein. These results indicate that SpaA plays a role in the virulence of S. sobrinus by specifically interacting with fluid-phase salivary agglutinin to mediate cell aggregation.
远缘链球菌SpaA蛋白与变形链球菌P1蛋白在氨基酸水平上具有66%的序列同源性。为了确定SpaA蛋白是否能在变形链球菌中表达并在功能上替代P1蛋白,从质粒pX1303中分离出远缘链球菌6715的spaA基因,并将其插入大肠杆菌-链球菌穿梭载体pVA838中。将所得质粒pX1600转化到P1缺陷型菌株变形链球菌834中,该菌株在唾液介导的聚集以及黏附于唾液包被的羟基磷灰石表面的能力方面存在缺陷。对变形链球菌834(pX1600)细胞蛋白组分的蛋白质免疫印迹(免疫印迹)分析在变溶菌素溶解的细胞壁中检测到一种主要的210 kDa蛋白,其电泳迁移率与远缘链球菌SpaA蛋白相似,在细胞外蛋白组分中检测到一种次要的210 kDa蛋白和一种主要的64 kDa蛋白。毒力特性分析表明,变形链球菌834(pX1600)细胞表达SpaA蛋白恢复了变形链球菌834细胞在唾液或唾液凝集素存在下聚集的能力,但不能黏附于唾液包被的羟基磷灰石。这种细胞聚集被抗远缘链球菌SpaA蛋白的抗血清特异性抑制。这些结果表明,SpaA通过与液相唾液凝集素特异性相互作用介导细胞聚集,在远缘链球菌的毒力中发挥作用。