Protein phosphorylation and regulation of adaptive responses in bacteria.
- 1 December 1989
- journal article
- review article
- Vol. 53 (4) , 450-90
Abstract
Bacteria continuously adapt to changes in their environment. Responses are largely controlled by signal transduction systems that contain two central enzymatic components, a protein kinase that uses adenosine triphosphate to phosphorylate itself at a histidine residue and a response regulator that accepts phosphoryl groups from the kinase. This conserved phosphotransfer chemistry is found in a wide range of bacterial species and operates in diverse systems to provide different regulatory outputs. The histidine kinases are frequently membrane receptor proteins that respond to environmental signals and phosphorylate response regulators that control transcription. Four specific regulatory systems are discussed in detail: chemotaxis in response to attractant and repellent stimuli (Che), regulation of gene expression in response to nitrogen deprivation (Ntr), control of the expression of enzymes and transport systems that assimilate phosphorus (Pho), and regulation of outer membrane porin expression in response to osmolarity and other culture conditions (Omp). Several additional systems are also examined, including systems that control complex developmental processes such as sporulation and fruiting-body formation, systems required for virulent infections of plant or animal host tissues, and systems that regulate transport and metabolism. Finally, an attempt is made to understand how cross-talk between parallel phosphotransfer pathways can provide a global regulatory curcuitry.This publication has 99 references indexed in Scilit:
- Phase variation in Bordetella pertussis by frameshift mutation in a gene for a novel two-component systemNature, 1989
- Three-dimensional structure of CheY, the response regulator of bacterial chemotaxisNature, 1989
- Mutants defective in bacterial chemotaxis show modified protein phosphorylationCell, 1988
- Regulation of the phosphate regulon of Escherichia coli K-12: Regulation and role of the regulatory gene phoRJournal of Molecular Biology, 1985
- Protein methylation in behavioural control mechanisms and in signal transductionNature, 1979
- Sensory adaptation mutants of E. coliCell, 1978
- Failure of sensory adaptation in bacterial mutants that are defective in a protein methylation reactionCell, 1978
- Normal-to-curly flagellar transitions and their role in bacterial tumbling. Stabilization of an alternative quaternary structure by mechanical forceJournal of Molecular Biology, 1977
- Isolation, characterization and complementation of Salmonella typhimurium chemotaxis mutantsJournal of Molecular Biology, 1975
- Analysis of the regulation of Escherichia coli alkaline phosphatase synthesis using deletions and φ80 transducing phagesJournal of Molecular Biology, 1975