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E3 SUMO ligase AtSIZ1 positively regulates SLY1-mediated GA signalling and plant development.

Authors :
Sung-Il Kim
Bong Soo Park
Do Youn Kim
Song Yion Yeu
Sang Ik Song
Jong Tae Song
Hak Soo Seo
Source :
Biochemical Journal; 7/15/2015, Vol. 469 Issue 2, p299-314, 16p
Publication Year :
2015

Abstract

Gibberellins affect various plant development processes including germination, cell division and elongation, and flowering. A large number of studies have been carried out to address the molecular mechanisms that mediate gibberellin signalling effects on plant growth. However, such studies have been limited to DELLA protein degradation; the regulatory mechanisms controlling how the stability and function of SLEEPY1 (SLY1), a protein that interacts with target DELLA proteins as components of the Skp, Cullin, F-box (SCF)<superscript>SLY1</superscript> complex, are modulated at the posttranslational level have not been addressed. In the present study, we show that the E3 SUMO (small ubiquitin-related modifier) ligase AtSIZ1 regulates gibberellic acid signalling in Arabidopsis species by sumoylating SLY1. SLY1 was less abundant in siz1-2 mutants than inwild-type plants, but theDELLA protein repressor of ga1-3 (RGA) was more abundant in siz1-2 mutants than in wild-type plants. SLY1 also accumulated to a high level in the SUMO protease mutant esd4. Transgenic sly1-13 mutants over-expressing SLY1 were phenotypically similar to wild-type plants; however, sly1-13 plants over-expressing amutatedmSLY1 protein (K122R, a mutation at the sumoylation site) retained the mutant dwarfing phenotype. Over-expression of SLY1 in sly1- 13 mutants resulted in a return of RGA levels to wild-type levels, but RGA accumulated to high levels in mutants overexpressing mSLY1. RGA was clearly detected in Arabidopsis co-expressing AtSIZ1 andmSLY1, but not in plants co-expressing AtSIZ1 and SLY1. In addition, sumoylated SLY1 interacted with RGA and SLY1 sumoylation was significantly increased by GA. Taken together, our results indicate that, in Arabidopsis, AtSIZ1 positively controls GA signalling through SLY1 sumoylation. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
02646021
Volume :
469
Issue :
2
Database :
Complementary Index
Journal :
Biochemical Journal
Publication Type :
Academic Journal
Accession number :
108474649
Full Text :
https://doi.org/10.1042/BJ20141302