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PMID: 15358768 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, Non-P.H.S.

Autophosphorylation activity of the Arabidopsis ethylene receptor multigene family.

The Journal of biological chemistry ·Vol. 279 ·No. 47 ·2004-11-19 ·Pages 48734-41

Moussatche P, Klee HJ

Abstract

Receptors for the gaseous phytohormone ethylene show sequence similarity to bacterial two-component histidine kinases. These receptors are encoded by a multigene family that can be divided into subfamilies 1 and 2. It has been previously shown that a subfamily 1 Arabidopsis thaliana ethylene receptor, ETR1, autophosphorylates in vitro on a conserved histidine residue (1). However, sequence comparisons between the five ethylene receptor family members suggest that subfamily 2 members do not have all the motifs necessary for histidine kinase activity. Further, a tobacco subfamily 2 receptor, NTHK1, autophosphorylates on serines and threonines in vitro (2). Here we show that all five Arabidopsis ethylene receptor proteins autophosphorylate in vitro. We analyzed the nature of the phosphorylated amino acids by acid/base stability and bi-dimensional thin layer electrophoresis and demonstrated that unlike ETR1 all other ethylene receptors autophosphorylate predominantly on serine residues. ERS1, the only other subfamily 1 receptor, is able to phosphorylate on both histidine and serine residues in the presence of Mn2+. However, histidine autophosphorylation is lost when ERS1 is assayed in the presence of both Mg2+ and Mn2+, suggesting that this activity may not occur in vivo. Furthermore, mutation of the histidine residue conserved in two-component systems does not abolish serine autophosphorylation, eliminating the possibility of a histidine to serine phosphotransfer. Our biochemical observations complement the recently published genetic data that histidine kinase activity is not necessary for ethylene receptor function in plants and suggest that ethylene signal transduction does not occur through a phosphorelay mechanism.

MeSH Terms
Amino Acid Motifs Amino Acid Sequence Amino Acids/chemistry Arabidopsis/metabolism Arabidopsis Proteins DNA Primers/chemistry DNA, Complementary/metabolism Electrophoresis Glutathione Transferase/metabolism Histidine/chemistry Magnesium/chemistry Manganese/chemistry Molecular Sequence Data Multigene Family Mutagenesis Mutation Phosphorylation Plant Proteins/chemistry,genetics,metabolism Plasmids/metabolism Protein Structure, Tertiary Receptors, Cell Surface/chemistry,metabolism Recombinant Proteins/chemistry Sequence Homology, Amino Acid Serine/chemistry Signal Transduction
Chemicals
Amino Acids Arabidopsis Proteins DNA Primers DNA, Complementary ERS protein, Arabidopsis Plant Proteins Receptors, Cell Surface Recombinant Proteins ethylene receptors, plant Manganese Serine Histidine Glutathione Transferase Magnesium
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Moussatche Patricia
Plant Molecular and Cellular Biology Program, University of Florida, Gainesville, Florida 32611, USA. moussatche@chem.ufl.edu
Klee Harry J
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
0021-9258
Published
2004-11-19
Epub
2004-00-09
Pages
48734-41
Language
English
Region
United States
NLM ID
2985121R
Subset
IM
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