GBF 1, a transcription factor of blue light signaling in Arabidopsis, is degraded in the dark by a proteasome-mediated pathway independent of COP 1 and SPA 1
Date
2008
Journal Title
Journal ISSN
Volume Title
Publisher
The American Society for Biochemistry and Molecular Biology, Inc.
Abstract
Arabidopsis GBF1/ZBF2 is a bZIP transcription factor that
plays dual but opposite regulatory roles in cryptochrome-mediated blue light signaling. Here, we show the genetic and molecular interrelation of GBF1 with two well characterized negative
regulators of light signaling, COP1 and SPA1, in photomorphogenic growth and light-regulated gene expression. Our results
further reveal that GBF1 protein is less abundant in the dark-
grown seedlings and is degraded by a proteasome-mediated
pathway independent of COP1 and SPA1. Furthermore, COP1
physically interacts with GBF1 and is required for the optimum
accumulation of GBF1 protein in light-grown seedlings. Taken
together, this study provides a mechanistic view of concerted
function of three important regulators in Arabidopsis seedling
development.
Description
Keywords
Arabidopsis, GBF1, Transcription Factor, Blue Light Signaling, Proteasome-mediated Pathway, COP1, SPA1
Citation
J. Biol. Chem., 283(51): 35772-35782
