Statements in which the resource exists as a subject.
PredicateObject
rdf:type
lifeskim:mentions
pubmed:issue
1
pubmed:dateCreated
2006-1-4
pubmed:abstractText
The genome of Streptococcus mutans UA159 contains two phospho-beta-glucosidase genes, bglA and celA, which occur in operon-like arrangements along with genes for components of phosphotransferase transport systems and a third phospho-beta-glucosidase encoded by the arb gene, which does not have its own associated transport system but relies on uptake by the bgl or cel systems. Targeted inactivation of each of the phospho-beta-glucosidase genes revealed that bglA is involved in aesculin hydrolysis, celA is essential for utilisation of cellobiose, amygdalin, gentobiose and salicin, and arb is required for utilisation of arbutin. Inactivation of genes for the phosphotransferase systems revealed an overlap of specificity for transport of beta-glucosides and also indicated that further, unidentified transport systems exist. The cel and arb genes are subject to catabolite repression by glucose, but the regM gene is not essential for catabolite repression. Screening a collection of isolates of S. mutans revealed strains with deletions affecting the msm, bgl and/or cel operons. The phenotypes of these strains could largely be explained on the basis of the results obtained from the knockout mutants of S. mutans UA159 but also indicated the existence of other pathways apparently absent from UA159. The extensive genetic and phenotypic variation found in beta-glucoside metabolism indicates that there may be extensive heterogeneity in the species.
pubmed:language
eng
pubmed:journal
pubmed:citationSubset
D
pubmed:chemical
pubmed:status
MEDLINE
pubmed:month
Feb
pubmed:issn
0902-0055
pubmed:author
pubmed:issnType
Print
pubmed:volume
21
pubmed:owner
NLM
pubmed:authorsComplete
Y
pubmed:pagination
21-7
pubmed:dateRevised
2008-11-21
pubmed:meshHeading
pubmed-meshheading:16390337-Amygdalin, pubmed-meshheading:16390337-Arbutin, pubmed-meshheading:16390337-Bacterial Proteins, pubmed-meshheading:16390337-Benzyl Alcohols, pubmed-meshheading:16390337-Cellobiose, pubmed-meshheading:16390337-Cellulase, pubmed-meshheading:16390337-Esculin, pubmed-meshheading:16390337-Gene Deletion, pubmed-meshheading:16390337-Gene Silencing, pubmed-meshheading:16390337-Genetic Variation, pubmed-meshheading:16390337-Genome, Bacterial, pubmed-meshheading:16390337-Glucosides, pubmed-meshheading:16390337-Humans, pubmed-meshheading:16390337-Hydrolysis, pubmed-meshheading:16390337-Mutation, pubmed-meshheading:16390337-Operon, pubmed-meshheading:16390337-Phenotype, pubmed-meshheading:16390337-Phosphoenolpyruvate Sugar Phosphotransferase System, pubmed-meshheading:16390337-Streptococcus mutans, pubmed-meshheading:16390337-beta-Glucosidase
pubmed:year
2006
pubmed:articleTitle
Genomic variation in Streptococcus mutans: deletions affecting the multiple pathways of beta-glucoside metabolism.
pubmed:affiliation
Oral Biology, School of Dental Sciences, University of Newcastle, Newcastle upon Tyne, UK.
pubmed:publicationType
Journal Article