Ethylene-Binding Sites Generated in Yeast Expressing the Arabidopsis ETR1 Gene
- 15 December 1995
- journal article
- Published by American Association for the Advancement of Science (AAAS) in Science
- Vol. 270 (5243) , 1809-1811
- https://doi.org/10.1126/science.270.5243.1809
Abstract
Mutations in the ETR1 gene of Arabidopsis thaliana confer insensitivity to ethylene, which indicates a role for the gene product in ethylene signal transduction. Saturable binding sites for [ 14 C]ethylene were detected in transgenic yeast expressing the ETR1 protein, whereas control yeast lacking ETR1 showed no detectable ethylene binding. Yeast expressing a mutant form of ETR1 ( etr1-1 ) also showed no detectable ethylene binding, which provides an explanation for the ethylene-insensitive phenotype observed in plants carrying this mutation. Expression of truncated forms of ETR1 in yeast provided evidence that the amino-terminal hydrophobic domain of the protein is the site of ethylene binding. It was concluded from these results that ETR1 acts as an ethylene receptor in Arabidopsis .Keywords
This publication has 15 references indexed in Scilit:
- An Ethylene-Inducible Component of Signal Transduction Encoded by Never-ripeScience, 1995
- Analysis of Ethylene Signal-Transduction Kinetics Associated with Seedling-Growth Response and Chitinase Induction in Wild-Type and Mutant ArabidopsisPlant Physiology, 1995
- Arabidopsis Ethylene-Response Gene ETR1 : Similarity of Product to Two-Component RegulatorsScience, 1993
- Ethylene BiosynthesisAnnual Review of Plant Biology, 1993
- Signal transduction schemes of bacteriaCell, 1993
- CTR1, a negative regulator of the ethylene response pathway in arabidopsis, encodes a member of the Raf family of protein kinasesCell, 1993
- COMMUNICATION MODULES IN BACTERIAL SIGNALING PROTEINSAnnual Review of Genetics, 1992
- Insensitivity to Ethylene Conferred by a Dominant Mutation in Arabidopsis thalianaScience, 1988
- Measurement of Ethylene Binding in Plant TissuePlant Physiology, 1979
- Molecular Requirements for the Biological Activity of EthylenePlant Physiology, 1967