Mutations Altering the N-Terminal Receiver Domain of NRI (NtrC) That Prevent Dephosphorylation by the NRII-PII Complex inEscherichia coli
Open Access
- 1 September 2004
- journal article
- Published by American Society for Microbiology in Journal of Bacteriology
- Vol. 186 (17) , 5730-5740
- https://doi.org/10.1128/jb.186.17.5730-5740.2004
Abstract
The phosphorylated form of NRI is the transcriptional activator of nitrogen-regulated genes inEscherichia coli. NRI∼P displays a slow autophosphatase activity and is rapidly dephosphorylated by the complex of the NRII and PII signal transduction proteins. Here we describe the isolation of two mutations, causing the alterations ΔD10 and K104Q in the receiver domain of NRI, that were selected as conferring resistance to dephosphorylation by the NRII-PII complex. The mutations, which alter highly conserved residues near the D54 site of phosphorylation in the NRI receiver domain, resulted in elevated expression of nitrogen-regulated genes under nitrogen-rich conditions. The altered NRI receiver domains were phosphorylated by NRII in vitro but were defective in dephosphorylation. The ΔD10 receiver domain retained normal autophosphatase activity but was resistant to dephosphorylation by the NRII-PII complex. The K104Q receiver domain lacked both the autophosphatase activity and the ability to be dephosphorylated by the NRII-PII complex. The properties of these altered proteins are consistent with the hypothesis that the NRII-PII complex is not a true phosphatase but rather collaborates with NRI≈P to bring about its dephosphorylation.Keywords
This publication has 46 references indexed in Scilit:
- Crystal Structure of the C-terminal Domain of the Two-Component System Transmitter Protein Nitrogen Regulator II (NRII; NtrB), Regulator of Nitrogen Assimilation in Escherichia coli,Biochemistry, 2004
- Mechanism of Phosphatase Activity in the Chemotaxis Response Regulator CheYBiochemistry, 2003
- High-Resolution Solution Structure of the Beryllofluoride-Activated NtrC Receiver DomainBiochemistry, 2003
- Mechanism of the PII-Activated Phosphatase Activity of Escherichia coli NRII (NtrB): How the Different Domains of NRII Collaborate to Act as a PhosphataseBiochemistry, 2003
- Genetic and Biochemical Analysis of Phosphatase Activity of Escherichia coli NRII (NtrB) and Its Regulation by the PII Signal Transduction ProteinJournal of Bacteriology, 2003
- Structure and catalytic mechanism of the E. coli chemotaxis phosphatase CheZNature Structural & Molecular Biology, 2002
- Phosphoaspartates in bacterial signal transductionCurrent Opinion in Structural Biology, 2001
- Constitutive Forms of the Enhancer-binding Protein NtrC: Evidence that Essential Oligomerization Determinants Lie in the Central Activation DomainJournal of Molecular Biology, 1995
- Histidine phosphorylation and phosphoryl group transfer in bacterial chemotaxisNature, 1988
- A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye bindingAnalytical Biochemistry, 1976