Mutants of the two-component regulatory protein FixJ of Rhizobium meliloti that have increased activity at the nifA promoter
-
Add time:09/01/2019 Source:sciencedirect.com
FixL and FixJ belong to a two-component regulatory system in Rhizobium meliloti that induces the expression of numerous nitrogen-fixation genes during symbiosis with alfalfa. FixJ is a positive activator required for transcription of the regulatory genes nifA andfixK, while FixL is an oxygen-binding hemoprotein capable of regulating the phosphorylation status of both itself and FixJ, in response to oxygen availability. In this study, we isolated four FixJ mutants that display increased activity at the nifA promoter (PnifA) in Escherichia coli. All four mutants possess amino acid changes in a domain of FixJ that is conserved in other response regulator proteins, and all exhibit increased activity at PnifA in R. meliloti that is dependent on the presence of FixL. One of the mutant proteins, while less efficient at accepting phosphate from a truncated derivative of FixL (FixL∗), nevertheless has a phosphorylated form that is more stable than the phosphorylated form of wild-type (wt) FixJ and is more resistant to the phosphatase activity of FixL∗. The wt FixJ-phosphate was found to have a half-life of approximately 4 h, which makes it an unusually long-lived response regulator protein. The exceptional stability of wt FixJ-phosphate and the altered phosphorylation properties observed for the mutant are discussed in relation to signal transduction in the FixLJ system.
We also recommend Trading Suppliers and Manufacturers of FixJ protein (cas 136253-38-8). Pls Click Website Link as below: cas 136253-38-8 suppliers
Prev:Two distinct classes of FixJ binding sites defined by in vitro selection
Next:Insights into Signal Transduction Revealed by the Low Resolution Structure of the FixJ Response Regulator) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- Chapter 10 - Oxygen‐Sensing Histidine‐Protein Kinases: Assays of Ligand Binding and Turnover of Response‐Regulator Substrates09/08/2019
- Crystal structure of the response regulator spr1814 from Streptococcus pneumoniae reveals unique interdomain contacts among NarL family proteins09/07/2019
- Insights into heme-based O2 sensing from structure–function relationships in the FixL proteins09/06/2019
- CommunicationComplexation precedes phosphorylation for two-component regulatory system FixL/FixJ of Sinorhizobium meliloti109/05/2019
- Research ArticlesConformational changes induced by phosphorylation of the FixJ receiver domain09/04/2019
- Research ArticleStructural transitions in the FixJ receiver domain09/03/2019
- Insights into Signal Transduction Revealed by the Low Resolution Structure of the FixJ Response Regulator09/02/2019
- Two distinct classes of FixJ binding sites defined by in vitro selection08/31/2019
- CommunicationPromoter-specific involvement of the FixJ receiver domain in transcriptional activation108/30/2019
-
Health and Chemical more >


