Bacterial Small-Molecule Signaling Pathways
Publication Year
2006
Type
Journal Article
Abstract
Bacteria use diverse small molecules for extra- and intracellular signaling. They scan small-molecule mixtures to access information about both their extracellular environment and their intracellular physiological status, and based on this information, they continuously interpret their circumstances and react rapidly to changes. Bacteria must integrate extra- and intracellular signaling information to mount appropriate responses to changes in their environment. We review recent research into two fundamental bacterial small-molecule signaling pathways: extracellular quorum-sensing signaling and intracellular cyclic dinucleotide signaling. We suggest how these two pathways may converge to control complex processes including multicellularity, biofilm formation, and virulence. We also outline new questions that have arisen from recent studies in these fields.Bacteria use diverse small molecules for extra- and intracellular signaling. They scan small-molecule mixtures to access information about both their extracellular environment and their intracellular physiological status, and based on this information, they continuously interpret their circumstances and react rapidly to changes. Bacteria must integrate extra- and intracellular signaling information to mount appropriate responses to changes in their environment. We review recent research into two fundamental bacterial small-molecule signaling pathways: extracellular quorum-sensing signaling and intracellular cyclic dinucleotide signaling. We suggest how these two pathways may converge to control complex processes including multicellularity, biofilm formation, and virulence. We also outline new questions that have arisen from recent studies in these fields.;Bacteria use diverse small molecules for extra- and intracellular signaling. They scan small-molecule mixtures to access information about both their extracellular environment and their intracellular physiological status, and based on this information, they continuously interpret their circumstances and react rapidly to changes. Bacteria must integrate extra- and intracellular signaling information to mount appropriate responses to changes in their environment. We review recent research into two fundamental bacterial small-molecule signaling pathways: extracellular quorum-sensing signaling and intracellular cyclic dinucleotide signaling. We suggest how these two pathways may converge to control complex processes including multicellularity, biofilm formation, and virulence. We also outline new questions that have arisen from recent studies in these fields.;Bacteria use diverse small molecules for extra- and intracellular signaling. They scan small-molecule mixtures to access information about both their extracellular environment and their intracellular physiological status, and based on this information, they continuously interpret their circumstances and react rapidly to changes. Bacteria must integrate extra- and intracellular signaling information to mount appropriate responses to changes in their environment. We review recent research into two fundamental bacterial small-molecule signaling pathways: extracellular quorum-sensing signaling and intracellular cyclic dinucleotide signaling. We suggest how these two pathways may converge to control complex processes including multicellularity, biofilm formation, and virulence. We also outline new questions that have arisen from recent studies in these fields. [PUBLICATION ABSTRACT];
Keywords
4-Butyrolactone - analogs & derivatives,
4-Butyrolactone - metabolism,
Allosteric regulation,
bacteria,
Bacterial Physiological Phenomena,
Bacterial Proteins - metabolism,
Bacteriology,
biofilm,
Biofilms,
Biofilms - growth & development,
Biological and medical sciences,
Cyclic GMP - analogs & derivatives,
Cyclic GMP - metabolism,
Escherichia coli Proteins,
Fundamental and applied biological sciences. Psychology,
Gene expression,
Gene Expression Regulation,
Gene Expression Regulation,
Bacterial,
Genes,
Bacterial,
Homoserine - analogs & derivatives,
Homoserine - metabolism,
Lactones,
Lactones - metabolism,
Microbiology,
Miscellaneous,
Models,
Biological,
Molecules,
Oligopeptides - metabolism,
Phosphoric Diester Hydrolases - metabolism,
Phosphorus-Oxygen Lyases - metabolism,
Phosphorylation,
physiological state,
Purine Nucleotides - metabolism,
Quinolones - metabolism,
quorum sensing,
Review,
Second Messenger Systems,
Signal Transduction,
Virulence,
Virulence - genetics
Journal
Science (American Association for the Advancement of Science)
Volume
311
Pages
1113-1116
ISBN
0036-8075;1095-9203;