Demuth D R, Golub E E, Malamud D
Department of Biochemistry, School of Dental Medicine, University of Pennsylvania, Philadelphia 19104-6002.
J Biol Chem. 1990 May 5;265(13):7120-6.
Colonization of oral tissues by Streptococcus sanguis may be influenced by a mucin-like salivary glycoprotein (SAG) through a calcium-dependent interaction with a specific bacterial receptor. We report the nucleotide and deduced amino acid sequence of the S. sanguis receptor (SSP-5) and show that this protein may bind sialic acid residues of SAG. The SSP-5 protein contains three unique structural domains, two of which consist of repetitive amino acid sequences. The N-terminal domain is comprised of four tandem copies of an 82-residue repeat which exhibits homology to M protein of Streptococcus pyogenes. This region is highly charged and predicted to be alpha-helical. A second hydrophilic repetitive domain consists of three copies of a 39-amino acid sequence containing 30% proline flanked by nonrepetitive proline-rich sequence. The third domain consists of 48% proline and resides near the C terminus of the protein. Secondary structure analysis of the SSP-5 sequence also identified four potential helix-turn-helix motifs that resembled E-F hand calcium binding domains. The SSP-5 protein is highly homologous to a surface antigen expressed by the mutans streptococci and the domain structure of SSP-5 is conserved within this family of proteins. The interactions of SSP-5 and of intact S. sanguis with SAG were inhibited by neuraminidase digestion of the salivary glycoprotein and by simple sugars containing sialic acid, suggesting that sialic acid is the primary ligand involved in the binding reaction.
血链球菌在口腔组织中的定植可能受到一种黏蛋白样唾液糖蛋白(SAG)的影响,这种影响通过其与特定细菌受体的钙依赖性相互作用实现。我们报告了血链球菌受体(SSP-5)的核苷酸和推导的氨基酸序列,并表明该蛋白可能结合SAG的唾液酸残基。SSP-5蛋白包含三个独特的结构域,其中两个由重复的氨基酸序列组成。N端结构域由一个82个残基重复序列的四个串联拷贝组成,该序列与化脓性链球菌的M蛋白具有同源性。该区域带电荷很高,预计为α螺旋结构。第二个亲水性重复结构域由一个39个氨基酸序列的三个拷贝组成,该序列含有30%的脯氨酸,两侧是富含脯氨酸的非重复序列。第三个结构域由48%的脯氨酸组成,位于蛋白质的C端附近。对SSP-5序列的二级结构分析还确定了四个潜在的螺旋-转角-螺旋基序,类似于E-F手钙结合结构域。SSP-5蛋白与变形链球菌表达的一种表面抗原高度同源,并且SSP-5的结构域结构在该蛋白家族中是保守的。唾液糖蛋白经神经氨酸酶消化以及含有唾液酸的单糖均可抑制SSP-5和完整血链球菌与SAG的相互作用,这表明唾液酸是参与结合反应的主要配体。