Molecular Interactions of Surface Protein Peptides of Streptococcus Gordonii with Human Salivary Components
Overview
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Oral streptococci play a large role in dental biofilm formation, and several types interact as early colonizers with the enamel salivary pellicle to form the primary biofilm, as well as to incorporate other bacteria on tooth surfaces. Interactions of surface molecules of individual streptococci with the salivary pellicle on the tooth surface have an influence on the etiological properties of an oral biofilm. To elucidate the molecular interactions of streptococci with salivary components, binding between surface protein (SspB and PAg) peptides of Streptococcus gordonii and Streptococcus sobrinus were investigated by utilizing BIAcore biosensor technology. The analogous peptide [change of T at position 400 to K in SspB(390-402), resulting in the SspB(390-T400K-402) peptide] from S. gordonii showed the greatest response for binding to salivary components and inhibited the binding of Streptococcus sanguis by more than 50% in a competitive inhibition assay in a comparison with other SspB and PAg peptides. This peptide also bound to the high-molecular-weight protein complex of salivary components and the agglutinin (gp340/DMBT1) peptide (scavenger receptor cysteine-rich domain peptide 2 [SRCRP 2]). In addition, the SspB(390-T400K-402) peptide was visualized by two surface positive charges in connection with the positively charged residues, in which lysine was a key residue for binding. Therefore, the region containing lysine may have binding activity in S. gordonii and S. sanguis, and the SRCRP 2 region may function as a receptor for the binding. These findings may provide useful information regarding the molecular mechanism of early biofilm formation by streptococci on tooth surfaces.
Oral Commensal Streptococci: Gatekeepers of the Oral Cavity.
Baty J, Stoner S, Scoffield J J Bacteriol. 2022; 204(11):e0025722.
PMID: 36286512 PMC: 9664950. DOI: 10.1128/jb.00257-22.
Ito T, Ichinosawa T, Shimizu T PLoS One. 2017; 12(4):e0175483.
PMID: 28394940 PMC: 5386287. DOI: 10.1371/journal.pone.0175483.
Intercellular communications in multispecies oral microbial communities.
Guo L, He X, Shi W Front Microbiol. 2014; 5:328.
PMID: 25071741 PMC: 4076886. DOI: 10.3389/fmicb.2014.00328.
Multispecies biofilms and host responses: "discriminating the trees from the forest".
Peyyala R, Ebersole J Cytokine. 2012; 61(1):15-25.
PMID: 23141757 PMC: 4131722. DOI: 10.1016/j.cyto.2012.10.006.
Ligtenberg A, Karlsson N, Veerman E Int J Mol Sci. 2011; 11(12):5212-33.
PMID: 21614203 PMC: 3100851. DOI: 10.3390/ijms1112521.