TY - JOUR
T1 - Identification of interbacterial adhesion between oral Schaalia species and streptococcal serine-rich repeat glycoproteins
AU - Ahearn, Christian P.
AU - Tettelin, Hervé
AU - Vickerman, M. Margaret
AU - Ruhl, Stefan
N1 - Publisher Copyright:
© The Author(s) 2026. Published by Oxford University Press on behalf of FEMS. This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivs License (https://creativecommons.org/licenses/by-nc-nd/4.0/), which permits non-commercial reproduction and distribution of the work, in any medium, provided the original work is not altered or transformed in any way, and that the work is properly cited. For commercial re-use, please contact [email protected]
PY - 2026
Y1 - 2026
N2 - Interbacterial adhesion is central to multispecies biofilm formation. Streptococcal serine-rich repeat glycoproteins (SRRPs) play a well-defined role in oral colonization, yet SRRP involvement in interbacterial adhesion remains understudied. Here, we aimed to isolate SRRP-dependent adhesion partners of Streptococcus gordonii Challis (DL1) from human oral microbiota. Of 179 isolates screened, 23 coaggregated with DL1 but not with an isogenic SRRP-encoding gene deletion mutant. Whole-genome sequencing identified isolates as 19 Schaalia odontolytica, 3 Schaalia sp. HMT-172, and 1 non-Schaalia mixed-species isolate. Each Schaalia isolate also coaggregated with other oral streptococcal species that encoded SRRPs. When Sch. spp. whole cells were probed with a recombinant DL1 SRRP binding domain, which binds to sialic acids, no binding was observed. Formaldehyde and heat treatment of Sch. spp. cells to denature surface proteins reduced coaggregation with DL1 cells, whereas the same treatment of DL1 did not affect coaggregation with Sch. spp. Proteinase K treatment of DL1 or Sch. spp. reduced or eliminated coaggregation, respectively. Based on these observations, we propose that Sch. odontolytica and Sch. sp. HMT-172 surface proteins bind to formaldehyde- and heat-stable epitopes of streptococcal SRRPs, potentially constituting an important interbacterial adhesion interaction in oral biofilm formation.
AB - Interbacterial adhesion is central to multispecies biofilm formation. Streptococcal serine-rich repeat glycoproteins (SRRPs) play a well-defined role in oral colonization, yet SRRP involvement in interbacterial adhesion remains understudied. Here, we aimed to isolate SRRP-dependent adhesion partners of Streptococcus gordonii Challis (DL1) from human oral microbiota. Of 179 isolates screened, 23 coaggregated with DL1 but not with an isogenic SRRP-encoding gene deletion mutant. Whole-genome sequencing identified isolates as 19 Schaalia odontolytica, 3 Schaalia sp. HMT-172, and 1 non-Schaalia mixed-species isolate. Each Schaalia isolate also coaggregated with other oral streptococcal species that encoded SRRPs. When Sch. spp. whole cells were probed with a recombinant DL1 SRRP binding domain, which binds to sialic acids, no binding was observed. Formaldehyde and heat treatment of Sch. spp. cells to denature surface proteins reduced coaggregation with DL1 cells, whereas the same treatment of DL1 did not affect coaggregation with Sch. spp. Proteinase K treatment of DL1 or Sch. spp. reduced or eliminated coaggregation, respectively. Based on these observations, we propose that Sch. odontolytica and Sch. sp. HMT-172 surface proteins bind to formaldehyde- and heat-stable epitopes of streptococcal SRRPs, potentially constituting an important interbacterial adhesion interaction in oral biofilm formation.
KW - Schaalia odontolytica
KW - Schaaliasp. HMT-172
KW - coaggregation
KW - interbacterial adhesion
KW - oral streptococci
KW - serine-rich repeat glycoprotein (SRRP)
UR - https://www.scopus.com/pages/publications/105041337447
U2 - 10.1093/femsle/fnag057
DO - 10.1093/femsle/fnag057
M3 - Article
C2 - 42148817
AN - SCOPUS:105041337447
SN - 0378-1097
JO - FEMS Microbiology Letters
JF - FEMS Microbiology Letters
ER -