Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Inactivation of Streptococcus gordonii SspAB Alters Expression of Multiple Adhesin Genes

View through CrossRef
ABSTRACT SspA and SspB (antigen I/II family proteins) can bind Streptococcus gordonii to other oral bacteria and also to salivary agglutinin glycoprotein, a constituent of the salivary film or pellicle that coats the tooth. To learn if SspA and SspB are essential for adhesion and initial biofilm formation on teeth, S. gordonii DL1 was incubated with saliva-coated hydroxyapatite (sHA) for 2 h in Todd-Hewitt broth with 20% saliva to develop initial biofilms. Sessile cells attached to sHA, surrounding planktonic cells, and free-growing cells were recovered separately. Free-growing cells expressed more sspA -specific mRNA and sspB -specific mRNA than sessile cells. Free-growing cells expressed the same levels of sspA and sspB as planktonic cells. Surprisingly, an SspA − SspB − mutant strain showed 2.2-fold greater biofilm formation on sHA than wild-type S. gordonii DL1. To explain this observation, we tested the hypothesis that inactivation of sspA and sspB genes altered the expression of other adhesin genes during initial biofilm formation in vitro. When compared to wild-type cells, expression of scaA and abpB was significantly up-regulated in the SspA − SspB − strain in sessile, planktonic, and free-growing cells. Consistent with this finding, ScaA antigen was also overexpressed in planktonic and free-growing SspA − SspB − cells compared to the wild type. SspA/B adhesins, therefore, were strongly suggested to be involved in the regulation of multiple adhesin genes.
Title: Inactivation of Streptococcus gordonii SspAB Alters Expression of Multiple Adhesin Genes
Description:
ABSTRACT SspA and SspB (antigen I/II family proteins) can bind Streptococcus gordonii to other oral bacteria and also to salivary agglutinin glycoprotein, a constituent of the salivary film or pellicle that coats the tooth.
To learn if SspA and SspB are essential for adhesion and initial biofilm formation on teeth, S.
gordonii DL1 was incubated with saliva-coated hydroxyapatite (sHA) for 2 h in Todd-Hewitt broth with 20% saliva to develop initial biofilms.
Sessile cells attached to sHA, surrounding planktonic cells, and free-growing cells were recovered separately.
Free-growing cells expressed more sspA -specific mRNA and sspB -specific mRNA than sessile cells.
Free-growing cells expressed the same levels of sspA and sspB as planktonic cells.
Surprisingly, an SspA − SspB − mutant strain showed 2.
2-fold greater biofilm formation on sHA than wild-type S.
gordonii DL1.
To explain this observation, we tested the hypothesis that inactivation of sspA and sspB genes altered the expression of other adhesin genes during initial biofilm formation in vitro.
When compared to wild-type cells, expression of scaA and abpB was significantly up-regulated in the SspA − SspB − strain in sessile, planktonic, and free-growing cells.
Consistent with this finding, ScaA antigen was also overexpressed in planktonic and free-growing SspA − SspB − cells compared to the wild type.
SspA/B adhesins, therefore, were strongly suggested to be involved in the regulation of multiple adhesin genes.

Related Results

Antibiofilm activity of lichen secondary metabolites
Antibiofilm activity of lichen secondary metabolites
Activité anti-biofilm des métabolites secondaires de lichen Les bactéries buccales n'infectent pas seulement la bouche mais y resident. Elles peuvent également pass...
Microrna Regulation of Nodule Zone-Specific Gene Expression In Soybean
Microrna Regulation of Nodule Zone-Specific Gene Expression In Soybean
Nitrogen is a paramount important essential element for all living organisms. It has been found to bea crucial structural component of proteins, nucleic acids, enzymes and other ce...
External pore residue mediates slow inactivation in mu 1 rat skeletal muscle sodium channels.
External pore residue mediates slow inactivation in mu 1 rat skeletal muscle sodium channels.
1. Upon depolarization, voltage‐gated sodium channels assume non‐conducting inactivated states which may be characterized as ‘fast’ or ‘slow’ depending on the length of the repolar...
Evolution of X‐Chromosome Inactivation
Evolution of X‐Chromosome Inactivation
AbstractX‐chromosome inactivation is a transcriptional silencing of one of the two X chromosomes that occurs in females of marsupial and eutherian mammals. The process arose and de...
The Escherichia coli AIDA autotransporter adhesin recognizes an integral membrane glycoprotein as receptor
The Escherichia coli AIDA autotransporter adhesin recognizes an integral membrane glycoprotein as receptor
The AIDA-I autotransporter adhesin, as a prototype of the AIDA adhesin family, represents a tripartite antigen consisting of the functional adhesin AIDA-I (α-domain), which mediate...
FungalRV: adhesin prediction and immunoinformatics portal for human fungal pathogens
FungalRV: adhesin prediction and immunoinformatics portal for human fungal pathogens
Abstract Background The availability of sequence data of human pathogenic fungi generates opportunities to develop Bioinf...
Cross-species examination of X-chromosome inactivation highlights domains of escape from silencing
Cross-species examination of X-chromosome inactivation highlights domains of escape from silencing
AbstractBackgroundX-chromosome inactivation (XCI) in eutherian mammals is the epigenetic inactivation of one of the two X chromosomes in XX females in order to compensate for dosag...

Back to Top