Data Mining the Arabidopsis Genome Reveals Fifteen 14-3-3 Genes. Expression Is Demonstrated for Two out of Five Novel Genes
Open Access
- 1 September 2001
- journal article
- Published by Oxford University Press (OUP) in Plant Physiology
- Vol. 127 (1), 142-149
- https://doi.org/10.1104/pp.127.1.142
Abstract
In plants, 14-3-3 proteins are key regulators of primary metabolism and membrane transport. Although the current dogma states that 14-3-3 isoforms are not very specific with regard to target proteins, recent data suggest that the specificity may be high. Therefore, identification and characterization of all 14-3-3 (GF14) isoforms in the model plant Arabidopsis are important. Using the information now available from The Arabidopsis Information Resource, we found three new GF14 genes. The potential expression of these three genes, and of two additional novel GF14 genes (Rosenquist et al., 2000), in leaves, roots, and flowers was examined using reverse transcriptase-polymerase chain reaction and cDNA library polymerase chain reaction screening. Under normal growth conditions, two of these genes were found to be transcribed. These genes were namedgrf11and grf12, and the corresponding new 14-3-3 isoforms were named GF14omicron and GF14iota, respectively. The gene coding for GF14omicron was expressed in leaves, roots, and flowers, whereas the gene coding for GF14iota was only expressed in flowers. Gene structures and relationships between all members of the GF14 gene family were deduced from data available through The Arabidopsis Information Resource. The data clearly support the theory that two 14-3-3 genes were present when eudicotyledons diverged from monocotyledons. In total, there are 15 14-3-3 genes (grfs 1–15) in Arabidopsis, of which 12 (grfs 1–12) now have been shown to be expressed.Keywords
This publication has 21 references indexed in Scilit:
- 14-3-3 Proteins: Structure, Function, and RegulationAnnual Review of Pharmacology and Toxicology, 2000
- The 14-3-3 protein interacts directly with the C-terminal region of the plant plasma membrane H(+)-ATPase.Plant Cell, 1997
- Topology and target interaction of the fusicoccin‐binding 14‐3‐3 homologs of Commelina communisThe Plant Journal, 1997
- 14‐3‐3 proteins associate with the regulatory phosphorylation site of spinach leaf nitrate reductase in an isoform‐specific manner and reduce dephosphorylation of Ser‐543 by endogenous protein phosphatasesFEBS Letters, 1996
- Phosphorylated nitrate reductase from spinach leaves is inhibited by 14-3-3 proteins and activated by fusicoccinCurrent Biology, 1996
- Five cDNAs Encoding Arabidopsis GF14 ProteinsPlant Physiology, 1994
- A simple and efficient method for isolating RNA from pine treesPlant Molecular Biology Reporter, 1993
- A pathogen‐induced gene of barley encodes a protein showing high similarity to a protein kinase regulator.The Plant Journal, 1992
- A pathogen‐induced gene of barley encodes a protein showing high similarity to a protein kinase regulatorThe Plant Journal, 1992
- A plant homologue to mammalian brain 14‐3‐3 protein and protein kinase C inhibitorFEBS Letters, 1992