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Gene regulation by phosphate in enteric bacteria

Journal of Cellular Biochemistry · 1993 · Vol. 51(1) · pp. 47–54
Barry L. Wanner

Abstract

The Escherichia coli phosphate (PHO) regulon includes 31 (or more) genes arranged in eight separate operons. All are coregulated by environmental (extra-cellular) phosphate and are probably involved in phosphorus assimilation. Pi control of these genes requires the sensor PhoR, the response regulator PhoB, the binding protein-dependent Pi-specific transporter Pst, and the accessory protein PhoU. During Pi limitation, PhoR turns on genes of the PHO regulon by phosphorylating PhoB that in turn activates transcription by binding to promoters that share an 18-base consensus PHO Box. When Pi is in excess, PhoR, Pst, and PhoU together turn off the PHO regulon, presumably by dephosphorylating PhoB. In addition, two Pi-independent controls that may be forms of cross regulation turn on the PHO regulon in the absence of PhoR. The sensor CreC, formerly called PhoM, phosphorylates PhoB in response to some (unknown) catabolite, while acetyl phosphate may directly phosphorylate PhoB. Cross regulation of the PHO regulon by CreC and acetyl phosphate may be examples of underlying control mechanisms important for the general (global) control of cell growth and metabolism.

Bacterial Genetics and BiotechnologyAmino Acid Enzymes and MetabolismPlant nutrient uptake and metabolismRegulonOperonBiologyResponse regulatorGeneBiochemistryRegulation of gene expressionEscherichia coliCell biologyMutant

MeSH terms

Adenosine TriphosphateBacterial ProteinsBase SequenceBiological TransportEnergy MetabolismEscherichia coliGenes, BacterialModels, BiologicalMolecular Sequence DataOperonPhosphatesPhosphorylationPromoter Regions, GeneticProtein Processing, Post-TranslationalTranscription Factors
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