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vicR overexpression in Streptococcus mutans causes aggregation and affects interspecies competition.

Authors :
Yan J
Gong T
Ma Q
Zheng T
Chen J
Li J
Jing M
Lin Y
Wang X
Lei L
Wang S
Zeng J
Li Y
Source :
Molecular oral microbiology [Mol Oral Microbiol] 2023 Jun; Vol. 38 (3), pp. 224-236. Date of Electronic Publication: 2023 Feb 27.
Publication Year :
2023

Abstract

Streptococcus mutans is considered to be a major causative agent of dental caries. VicRK is a two-component signal transduction system (TCSTS) of S. mutans, which can regulate the virulence of S. mutans, such as biofilm formation, exopolysaccharide production, acid production, and acid resistance. Meanwhile, it can also regulate the production of mutacins (nlmC) through the TCSTS ComDE. In this study, we found that the vicR-overexpressing strain was more likely to aggregate to form cell clusters, leading to the formation of abnormal biofilm; the overexpression of vicR increased the length of the chain of S. mutans. Furthermore, the expression of the mutacins in the vicR overexpression strain was increased under aerobic conditions. Compared with the control strain and the parental strain, the vicR overexpression strain was more competitive against Streptococcus gordonii. But there was no significant difference against Streptococcus sanguinis. In clinical strains, the expression level of vicR was positively correlated with their competitive ability against S. gordonii. Transcriptional profiling revealed 24 significantly upregulated genes in the vicR-overexpressing strain, including nlmA, nlmB, nlmC, and nlmD encoding mutacins. Electrophoretic mobility shift assays and DNase I footprinting assays confirmed that VicR can directly bind to the promoter sequence of nlmD. Taken together, our findings further demonstrate that VicRK, an important TCSTS of S. mutans, is involved in S. mutans cell morphology and biofilm formation. VicRK regulates the production of more mutacins in S. mutans in response to oxygen stimulation. VicR can bind to the promoter sequence of nlmD, thereby directly regulating the production of mutacins NlmD.<br /> (© 2023 John Wiley & Sons A/S. Published by John Wiley & Sons Ltd.)

Details

Language :
English
ISSN :
2041-1014
Volume :
38
Issue :
3
Database :
MEDLINE
Journal :
Molecular oral microbiology
Publication Type :
Academic Journal
Accession number :
36779415
Full Text :
https://doi.org/10.1111/omi.12407