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PMID: 10564492 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Phosphorylation-induced dimerization of the FixJ receiver domain.

Molecular microbiology ·Vol. 34 ·No. 3 ·1999-11-00 ·Pages 504-11

Da Re S, Schumacher J, Rousseau P, Fourment J, Ebel C, Kahn D

Abstract

The 'two-component' transcriptional activator FixJ controls nitrogen fixation in Sinorhizobium meliloti. Phosphorylation of FixJ induces its dimerization, as evidenced by gel permeation chromatography and equilibrium sedimentation analysis. Phosphorylation-induced dimerization is an intrinsic property of the isolated receiver domain FixJN. Accordingly, chemical phosphorylation of both FixJ and FixJN are second-order reactions with respect to protein concentration. However, the second-order phosphorylation constant is 44-fold higher for FixJN than for FixJ. Therefore, the C-terminal transcriptional activator domain FixJC inhibits the chemical phosphorylation of the receiver domain FixJN. Conversely, FixJN has been shown previously to inhibit FixJC activity approximately 40-fold, reflecting the interaction between FixJN and FixJC. Therefore, we propose that modulation of FixJ activity involves both its dimerization and the disruption of the interface between FixJN and FixJC, resulting in the opening of the protein structure. Alanine scanning mutagenesis of FixJN indicated that the FixJ approximately P dimerization interface involves Val-91 and Lys-95 in helix alpha4. Dimerization was required for high-affinity binding to fixK promoter DNA.

MeSH Terms
Bacterial Proteins/chemistry,genetics,metabolism Chromatography, Gel Chromatography, Ion Exchange Dimerization Mutagenesis Nitrogen Fixation Phosphorylation Plasmids/genetics Promoter Regions, Genetic Sinorhizobium meliloti/genetics,metabolism Transcription Factors/genetics Ultracentrifugation
Chemicals
Bacterial Proteins NifA protein, Bacteria Transcription Factors FixJ protein, Bacteria
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Da Re S
Laboratoire de Biologie Moléculaire des Relations Plantes-Microorganismes, UMR 215 INRA-CNRS, Chemin de Borde Rouge, BP 27, 31326 Castanet-Tolosan Cedex, France.
Schumacher J
Rousseau P
Fourment J
Ebel C
Kahn D
Article Info
Journal
Molecular microbiology
Abbr.
Mol Microbiol
ISSN
0950-382X
Published
1999-11-00
Pages
504-11
Language
English
Region
England
NLM ID
8712028
Subset
IM
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