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Identification of NAD+ synthetase from Streptococcus sobrinus as a B-cell-stimulatory protein.

Streptococcus sobrinus, one agent of dental caries, secretes a protein that induces lymphocyte polyclonal activation of the host as a mechanism of immune evasion. We have isolated from culture supernatants of this bacterium a protein with murine B-cell-stimulatory properties and subsequently cloned the relevant gene. It contains an open reading frame of 825 bp encoding a polypeptide with 275 amino acid residues and a molecular mass of 30 kDa. The protein displays high sequence homology with NAD(+) synthetases from several organisms, including a conserved fingerprint sequence (SGGXD) characteristic of ATP pyrophosphatases. The polypeptide was expressed in Escherichia coli as a hexahistidine-tagged protein and purified in an enzymatically active form. The recombinant NAD(+) synthetase stimulates murine B cells after in vitro treatment of spleen cell cultures, as demonstrated by its ability to induce up-regulation of the expression of CD69, an early marker of lymphocyte activation. Stimulation with the recombinant NAD(+) synthetase was also observed with other B-cell markers, such as CD19(+), B220(+), and CD21(+). Cell proliferation follows the activation induced by the recombinant NAD(+) synthetase.

Amide Synthases↗

Induction of secretory immunity with bioadhesive poly (D,L-lactide-co-glycolide) microparticles containing Streptococcus sobrinus glucosyltransferase.

The effect of mucosal delivery of Streptococcus sobrinus glucosyltransferase (GTF) in bioadhesive poly (D,L-lactide-co-glycolide) (PLGA) microparticles on induction of salivary IgA and serum IgG antibody responses was measured in Sprague-Dawley rats. Preparations of GTF/PLGA/gelatin microparticles, or PLGA/gelatin microparticles or GTF in alum, were administered four times at weekly intervals by intranasal or intragastric routes. Two subcutaneous injections of GTF in PLGA/gelatin microparticles or in alum were given to separate groups of rats. Significant elevations in salivary IgA antibody levels to S. sobrinus GTF were observed only in the groups immunized intranasally 28 days after immunizations were begun. Five of six rats given the GTF microparticles intranasally had positive salivary IgA antibody responses to GTF, and the mean salivary IgA antibody level of this group was 30-fold higher than any other mucosally or systemically immunized group. Salivary IgA responses in the GTF-microparticle group remained significantly higher than all other mucosally immunized groups for at least 10 weeks after the primary immunization. All rats in this group demonstrated aspects of anamnesis following a more limited secondary course of intranasal administration. Intranasal administration of GTF in microparticles also induced a serum IgG response to GTF in some rats. After secondary intranasal GTF microparticle administration, several rats had sustained serum IgG antibody levels that were within the range of sera from rats subcutaneously injected with GTF in microparticles or in alum. Thus intranasal delivery of GTF-containing bioadhesive microparticles induced the highest and longest lasting salivary immune response of any mucosal or systemic route or vehicle tested and could be expected to be a useful method for induction of mucosal immunity.

Administration, Intranasal↗

Cross-reactivity between the immunodominant determinant of the antigen I component of Streptococcus sobrinus SpaA protein and surface antigens from other members of the Streptococcus mutans group.

Most members of the Streptococcus mutans group of microorganisms specify a major cell surface-associated protein, SpaA, that is defined by its antigenic properties. The region of the spaA gene from Streptococcus sobrinus 6715 encoding the immunodominant determinant of the major antigenic component (antigen I) of the SpaA protein has recently been characterized. This study examined whether recognition of the immunodominant determinant is independent of the immunized animal host and whether antibodies elicited by the immunodominant determinant cross-react with cell surface proteins from S. mutans of various serotypes. Mouse and rabbit antisera to the undenatured SpaA protein reacted similarly both with the immunodominant determinant and with other antigenic structures of the protein in Western immunoblots with SpaA polypeptides that were specified by spaA gene fragments expressed in recombinant Escherichia coli. This suggests that the antibody responses of inbred and outbred animals were similar. Furthermore, antibodies raised against both the S. sobrinus SpaA immunodominant determinant expressed by recombinant E. coli and the purified protein from S. sobrinus displayed similar strain specificities and protein band profiles towards cells surface proteins from S. mutans of various serotypes in immunodot and Western blot analyses, respectively. This suggests that for S. sobrinus serotype g, the immune response against the SpaA protein is governed by the immunodominant determinant of antigen I. In addition, it indicates that the SpaA protein domain containing the immunodominant determinant overlaps the domain conferring cross-reactivity to cell surface proteins of S. mutans of various serotypes.

Animals↗

Purification and characterization of recombinant cell surface protein antigen A of Streptococcus sobrinus B13N.

1. It has been reported that immunization of rhesus monkeys with the surface protein antigen I/II from Streptococcus mutans significantly reduced dental caries. 2. The surface protein antigen A (SpaA) from Streptococcus sobrinus is known to correspond antigenically to I/II. MD51 is an Escherichia coli host containing pMD51, a plasmid encoding the SpaA gene from Streptococcus sobrinus B13N. 3. The recombinant SpaA (rSpaA) was purified from cell extracts of Escherichia coli clone MD51. 4. The purified recombinant SpaA was homogeneous with a molecular weight of 210 kDa according to SDS-PAGE and had an isoelectric point of 4.2 based on isoelectric focusing. 5. Amino acid composition of rSpaA showed a relatively high amount of hydrophobic amino acids (39.7%).

Amino Acids↗

DNA sequence of the glucosyltransferase gene of serotype d Streptococcus sobrinus.

A glucosyltransferase (GTF) gene was cloned into Escherichia coli from serotype d Streptococcus sobrinus OMZ176. Transformed E. coli strain MI expressed water-insoluble glucan synthesizing activity. Restriction enzyme map of pGT31 extracted from MI shows that the enzyme gene exists in the 6.4-KB PstI-fragment inserted into pBR322 vector. DNA sequence analysis indicates that a single ORF (530-5,300) is located in the PstI-fragment. The putative amino-acid composition (1,590 residues) resembles those of other GTF-I enzymes obtained from serotype g S. sobrinus and serotype h Streptococcus downei. However, at the same positions of the sequence, 18 and 142 amino-acid residues are different between serotype d and g, and serotype d and h GTF-I enzymes, respectively. The differences between serotype d and h GTF-Is are distributed in N and C-terminal regions.

Amino Acid Sequence↗

[Effect of monoclonal antibody on the colonization of Streptococcus sobrinus and the development of dental caries in rats].

OBJECTIVE: To investigate the effect of local application of monoclonal antibody (McAb) raised against the major cell surface protein antigen of streptococcus sobrinus (PAg) on the colonization of rats' teeth by Streptococcus sobrinus (S. sobrinus) and the development of dental caries. METHODS: 30 wistar rats were divided into three groups: group I received McAb against PAg; group II received unrelated mice ascites; group III received PBS. They were applied on six occasions. After three times of application, streptomycin resistant S. sobrinus 6715 were inoculated onto the teeth and the rats were fed with caries-inducing diet 2000#. The number of colonized S. sobrinus were counted and the presence of caries was examined by the procedure of Keyes'. RESULTS: There was a significant lower level of colonization by S. sobrinus and lower mean caries scores treated with McAb compared with the control groups. CONCLUSION: Local passive immunization with McAb against PAg may be an effective way to prevent the colonization by implanted S. sobrinus and the development of dental caries.

Animals↗

Acid production by human strains of Streptococcus mutans and Streptococcus sobrinus.

Acid production by washed suspensions of human strains of Streptococcus mutans (n = 18) and Streptococcus sobrinus (n = 12) was measured. The strains were isolated from infants and adolescents with varying caries experience. Some of these strains and two laboratory strains (1 S. mutans and 1 S. sobrinus) had been tested in an earlier study for their cariogenicity in hamsters. Further, 3 Streptococcus sanguis strains and 1 S. sobrinus laboratory strain were included. Acid production was determined in repeated titration experiments at a constant pH of 5.5. Higher mean acid production activities (p < 0.05) were obtained by S. sobrinus compared with both S. mutans and S. sanguis. However, large variations among the strains were found both between and within the species. No clear relationship was found between the glycolytic activity of strains and the caries prevalence of the children from whom the strains had been isolated or the caries scores in a hamster model. In conclusion, although both S. mutans and S. sobrinus have aciduric and acidogenic properties, it is difficult to relate the acid production activity of pure cultures in vitro to the caries process in vivo.

Acids↗

Interactions between and within Streptococcus mutans and Streptococcus sobrinus isolated from humans harboring both species.

The prevalence of Streptococcus mutans and Streptococcus sobrinus was examined in plaque samples from small discrete areas of the buccal tooth surfaces of seven subjects. Strains of S. mutans and S. sobrinus were isolated and tested for bacteriocin-mediated interactions between and within the two species, using the stab inoculation technique. S. mutans and S. sobrinus did not colonize each tooth surface uniformly and, in plaque from small discrete sites, S. mutans and S. sobrinus were either undetected or present in different interspecies proportions. Within the same subject, there were no bacteriocin-mediated interactions between strains of the same mutans species and no difference in bacteriocin activity was found between the strains of S. mutans and S. sobrinus from different sites. When bacteriocin interactions were tested between isolated strains from all seven subjects a somewhat higher inhibition ability was found for producer strains isolated from plaque compared with those isolated from saliva. S. mutans appeared to be more bacteriocinogenic than S. sobrinus. Replacing the glucose in the medium with sucrose enhanced the bacteriocin activity of S. mutans towards other S. mutans strains but reduced the inhibitory interaction towards strains of S. sobrinus.

Adult↗

Diversity of surface protein antigen A gene in the chromosomal DNA of Streptococcus sobrinus.

A recombinant plasmid, pYA724, containing an 8.45-kb DNA fragment encoding surface protein antigen A (spaA) from Streptococcus sobrinus 6715 was used to examine the DNA homology of the spaA gene with chromosomal DNA of Streptococcus sobrinus B13N. Restriction endonuclease BamHI-digested pYA724 DNA was 32P radio-labeled by nick-translation, and a Southern blot DNA-DNA hybridization experiment was carried out. pYA724 DNA hybridized with a BamHI fragment of B13N chromosomal DNA, and the size of this fragment was larger than 8.45 kb. The chromosomal DNA was digested with BamHI-Pst I, BamHI-Hind III, and BamHI-Sal I, and analyzed by Southern blot DNA hybridization. pYA724 DNA hybridized with different sizes and numbers of DNA fragments of B13N chromosomal DNA; however, the sizes were not identical to those of internal fragments expected from the pYA724 restriction map. SpaA gene clone derivative plasmids, pYA745 and pYA756, were digested with EcoRI and Hinc II, respectively, and electrophoresed together with the digested B13N chromosomal DNA on the same gel; then Southern blot analysis was carried out. Fragments with sizes corresponding to the EcoRI or HincII internal fragments of pYA745 and pYA756 were not observed among the B13N fragments. These data indicate that serotype d S. sobrinus B13N has DNA homologous with the spaA gene from serotype g strain 6715, although within the same biotype strain has a diversity of arrangement within the chromosome.

Antigens, Bacterial↗

Strains of Streptococcus mutans and Streptococcus sobrinus attach to different pellicle receptors.

We compared the levels of adsorption of Streptococcus mutans JBP and Streptococcus sobrinus 6715 to experimental pellicles formed from unsupplemented and glucosyltransferase (GTF)-supplemented saliva. Pellicles formed on hydroxyapatite beads from GTF or from saliva-GTF mixtures possessed detectable GTF activity. Low levels of GTF activity were also detected in clarified whole human saliva, but not in samples of submandibular saliva. The adsorptive behavior of S. mutans JBP to pellicles formed from saliva or saliva-GTF mixtures was strikingly different from that of S. sobrinus 6715. S. mutans JBP adsorbed in higher numbers to pellicles formed from whole or submandibular saliva than to buffer-treated hydroxyapatite under the assay conditions used, in which blocking with albumin was used. In contrast, S. sobrinus 6715 attached in lower numbers and did not show enhanced adsorption to pellicles prepared from saliva. Pellicles prepared from the high-molecular-weight mucin fraction of submandibular saliva effectively promoted adsorption of S. mutans JBP, but none of the saliva fractions tested enhanced the attachment of S. sobrinus 6715 above the levels of buffer controls. Exposure of pellicles which contained GTF to sucrose to permit in situ synthesis of glucan markedly enhanced attachment of S. sobrinus 6715 but not attachment of S. mutans JBP. Also, the presence of sucrose throughout the adsorption period did not enhance attachment of S. mutans JBP. Both organisms possessed cell-associated GTF, and GTF preparations derived from S. sobrinus 6715 and Streptococcus sanguis FC-1 behaved like GTF derived from S. mutans JBP. S. sobrinus 6715 attached in high numbers to dextran-treated hydroxyapatite, whereas S. mutans JBP did not. These observations suggest that S. mutans JBP cells possess an adhesin which binds to salivary components in the pellicles. In contrast, S. sobrinus 6715 cells appear to possess an adhesin which binds to glucan in the pellicles. Four additional strains of S. mutans and four additional strains of S. sobrinus behaved qualitatively like strains JBP and 6715, respectively, and thus the differences observed appear to be representative of these species. Collectively, our data indicate that S. mutans and S. sobrinus attach to different receptors in experimental pellicles.

Adhesiveness↗

Chemical and functional properties of mutastein, an inhibitor of insoluble glucan synthesis by Streptococcus sobrinus.

Mutastein, a potent inhibitor of insoluble glucan synthesis by Streptococcus sobrinus, is a protein with a molecular weight of approximately 2 x 10(6). Amino acid and ELISA analyses suggested that mutastein is a mixture of heterogenous polymers of alpha-casein contained in the culture medium of the producing strain, Aspergillus terreus M3328. Mutastein strongly inhibited the primer-dependent insoluble glucan synthase of S. sobrinus B13. The primer-independent soluble glucan synthase was not affected by mutastein while primer-dependent soluble glucan synthase was slightly activated.

Amino Acids↗

Purification and properties of extracellular mutacin, a bacteriocin from Streptococcus sobrinus.

Mutacin MT6223, a cell-free bacteriocin produced by Streptococcus sobrinus MT6223, was purified by ammonium sulphate precipitation, chromatofocusing with PBE 94 and column chromatography on SP Sephadex C-25. The specific activity of the purified mutacin was increased 1950-fold with a recovery of 9.7%. The molecular mass of the purified mutacin preparation was estimated to be 6.5 kDa. The mutacin activity was stable from pH 2-7, and was resistant to treatment at 100 degrees C for 20 min. It was inactivated by papain or ficin digestion, and was partially inhibited by alpha-chymotrypsin. The mutacin was found to be active against strains of serotypes c, e and f of Streptococcus mutans and the addition of purified mutacin MT6223 to growing cells of S. mutans MT8148 resulted in a rapid inhibition of incorporation of [3H]thymidine, [3H]uracil or L-[3H]glutamic acid into DNA, RNA or protein, respectively. Specific pathogen-free Fischer rats fed diet 2000 and infected with S. mutans MT8148R showed significantly fewer caries and lower plaque scores when mutacin was administered through drinking water. The present study demonstrates that mutacin MT6223 inhibited the growth of mutans streptococci. Thus, mutacin MT6223 may be a candidate for use in dental caries prevention.

Animals↗

Peptide sequences for sucrose splitting and glucan binding within Streptococcus sobrinus glucosyltransferase (water-insoluble glucan synthetase).

The gene encoding glucosyltransferase responsible for water-insoluble glucan synthesis (GTF-I) of Streptococcus sobrinus (formerly Streptococcus mutans 6715) was cloned, expressed, and sequenced. A gene bank from S. sobrinus 6715 DNA was constructed in vector pUC18 and screened with anti-GTF-I antibody to detect clones producing GTF-I peptide. Five immunopositive clones were isolated, all of which produced peptides that bound alpha-1,6 glucan. GTF-I activity was found in only two large peptides: one stretching over the full length of the GTF-I peptide and composed of about 1,600 amino acid residues (AB1 clone) and the other lacking about 80 N-terminal residues and about 260 C-terminal residues (AB2 clone). A deletion study of the AB2 clone indicated that specific glucan binding, which is essential for water-insoluble glucan synthesis, was lost prior to sucrase activity with an increase in deletion from the 3' end of the GTF-I gene. These results suggest that the GTF-I peptide consists of three segments: that for sucrose splitting (approximately 1,100 residues), that for glucan binding (approximately 240 residues), and that of unknown function (approximately 260 residues), in order from the N terminus. The primary structure of the GTF-I peptide, deduced by DNA sequencing of the AB1 clone, was found to be very similar to that of the homologous protein from another strain of S. sobrinus.

Amino Acid Sequence↗

Biochemical properties of Streptococcus sobrinus reisolates from the gastrointestinal tract of a gnotobiotic rat.

Streptococcus sobrinus strain 6715-13-201 was inoculated into the oral cavity of a gnotobiotic rat and then reisolated from different portions of the gastrointestinal tract. Fourteen isolates, selected on the basis of their colonial morphology, were then screened for their ability to adhere to saliva-coated hydroxyapatite (SHA) in vitro, and their ability to produce extracellular polysaccharide from sucrose, and low pH in glucose broth. Certain isolates were also tested for their cariogenic potential as monoinfectants in gnotobiotic rats. All isolates differed in their abilities to adhere to SHA, with most showing an increased level of adhesion in the presence of sucrose, but this did not correlate with their ability to be aggregated by dextran. Most isolates were capable of producing glucosyltransferases (with only one exception) and dextranases (also one exception). There was more variability in the production of dextranase inhibitor. No isolate was capable of producing dextranase inhibitor in the absence of dextranase production. There were no correlations between the ability of isolates to adhere in vitro or produce/utilize polysaccharides and their ability to produce caries in vivo. Due to the differences between strains in their abilities to adhere, produce polysaccharides, utilize polysaccharides or produce a low pH and the lack of correlation between any of these parameters and cariogenicity, the results suggest that the ability of strains to colonize and produce caries depends on a number of different characteristics, no one of which is essential.

Animals↗

Use of a novel mobilizable vector to inactivate the scrA gene of Streptococcus sobrinus by allelic replacement.

The virulence factors of the cariogenic bacterium Streptococcus sobrinus have been difficult to assess because of a lack of tools for the genetic manipulation of this organism. The construction of an Escherichia coli-Streptococcus shuttle vector, pDL289, that can be mobilized into S. sobrinus by the conjugative plasmid pAM beta 1 was described in a previous report. The vector contains pVA380-1 for replication and mobilization in streptococci, the pSC101 replicon for maintenance in E. coli, a kanamycin resistance marker that functions in both hosts, and the multiple cloning site and lacZ from pGEM7Zf(-). pDL289 is stable with or without selection in several species of Streptococcus. In this study, a derivative with a deletion in the minus origin of the pVA380-1 component of pDL289 was constructed. This derivative, pDL289 delta 202, was less stable than pDL289 in Streptococcus gordonii Challis, Streptococcus mutans, and S. sobrinus. Both pDL289 and pDL289 delta 202 were mobilizable by pAM beta 1 into S. sobrinus, with frequencies of 3 x 10(-6) and 1 x 10(-7) transconjugants per recipient CFU, respectively. The cloned scrA gene of S. sobrinus 6715-10 coding for the EIISuc of the sucrose-specific phosphoenolpyruvate phosphotransferase system was interrupted by the insertion of a streptococcal spectinomycin resistance gene active in E. coli and streptococci. The interrupted scrA gene was subcloned into both pDL289 and pDL289 delta 202. Each recombinant plasmid was introduced into the DL1 strain of S. gordonii Challis, which was then used as a recipient for the conjugative transfer of pAM beta 1. The latter plasmid was used to mobilize each recombinant plasmid from S. gordonii Challis DL1 to S. sobrinus 6715-10RF. Subsequently, recombinants derived from a double-crossover event were isolated on the basis of resistance to spectinomycin and susceptibility to kanamycin. Recombinational events were confirmed by Southern hybridization, and the inactivation of the EII Suc in double crossovers was confirmed by phosphotransferase system assays. This is the first report of allelic replacement in S. sobrinus.

Cloning, Molecular↗

Acidogenicity and acidurance of fluoride-resistant Streptococcus sobrinus in vitro.

OBJECTIVE: To induce fluoride-resistant mutants of Streptococcus sobrinus in vitro and to study the acidogenic and acid tolerance of fluoride-resistant strains. METHODS: Fluoride-resistant mutants 6715-FR and S1-FR were obtained by subculturing S. sobrinus 6715 and freshly isolated S. sobrinus SSMU-S1 to media TSA or TSB, which contained different concentrations of fluoride. The lactic production and growth of fluoride-resistant strains and their respective parent strains were measured by gas chromatography and ultra-violet visible spectrophotometer. RESULTS: The stable fluoride-resistant mutants of S. sobrinus had been induced successfully in vitro. The acid production of 6715-FR or S1-FR was significantly greater than their parent strains in the presence of 0.5 or 5.0 mM fluoride. In the absence of fluoride, there were 2 situations: The lactic production of F-resistant S. sobrinus was less than or equal to its parent strains when initial pH value was above 5.0 while the result was the opposite when pH value was below 5.0. The F-resistant strains and the parent strains of S. sobrinus could reduce the suspension pH to identical values in the absence of fluoride, and the F-resistant strains were more aciduric in the presence of fluoride. CONCLUSIONS: The F-resistant strains of S. sobrinus had higher acidogenic and aciduric ability than the wild-type strains, and were expected to have stronger cariogenic potential at plaque fluoride levels.

Acids↗

Dissociation and electrophoretic separation of dextranase and dextranase inhibitor from a tightly bound enzyme-inhibitor complex of Streptococcus sobrinus.

Endodextranase was separated from dextranase inhibitor in culture filtrates of Streptococcus sobrinus by sodium dodecyl sulphate-polyacrylamide gel electrophoresis (SDS-PAGE) in gel slabs containing blue dextran. Sample preparation included dissociation of the enzyme from its inhibitor by boiling for 1 min in SDS. During subsequent incubation of the gel, dextranase was located as clear bands on a blue background, and dextranase inhibitor appeared as blue zones on a clear background following incubation in dextranase solution. The enzyme and the inhibitor existed in multiple forms, and the range of molecular masses for dextranase (223-132 kDa) permitted an excellent separation from dextranase inhibitor (49-25 kDa). Although dextranase-negative mutants, and wild type strains grown at low dilution rate in the chemostat, were devoid of free dextranase activity, the enzyme was easily located by analytical SDS-PAGE. Likewise, analysis of filtrates from wild type strains, which contained no free inhibitor activity when growth occurred at high dilution rate, revealed dextranase inhibitor activity on the gels. The total production (free + combined) of dextranase and inhibitor by S. sobrinus was determined by dissociation of enzyme-inhibitor complexes in concentrated cell-free filtrates, their separation by preparative SDS-PAGE and electroelution from the gels, followed by renaturation of protein activity. From a comparison of activity tests of free dextranase and free inhibitor in untreated filtrates with the results of similar tests on renatured electroeluates, the proportion of each constituent bound into a complex under each growth condition could be deduced.

Dextranase↗

Cloning of a Streptococcus sobrinus oligo-isomaltosaccharide synthase gene and characterization of its product.

A Streptococcus sobrinus gene coding for a glucosyltransferase (GTF)-S was cloned into Escherichia coli, using the bacteriophage lambda L47.1 and the plasmid vector pACYC184. The MD124 clone obtained expressed a 155 kDa GTF-S which did not react with any antisera against GTF-S1, -S2 and -I enzymes. The recombinant enzyme (designated rGTF-S3) was homogeneously purified from the MD124 cell-extract and characterized. The purified rGTF-S3 synthesized primer-independently alpha-1,6-linked linear oligosaccharides from sucrose. The dependence upon the sucrose concentration was diphasic, and the respective Km values were 1.3 and 25 mM. The properties except the Km values were similar to those of oligo-isomaltosaccharide synthase from S. sobrinus AHT.

Chromatography, High Pressure Liquid↗