SIZ1-Mediated Sumoylation of ICE1 Controls<i>CBF3/DREB1A</i>Expression and Freezing Tolerance in<i>Arabidopsis</i>

Kenji Miura(Purdue University West Lafayette), Jing Bo Jin(Purdue University West Lafayette), Ji‐Young Lee(Purdue University West Lafayette), Chan Yul Yoo(Purdue University West Lafayette), Vicki Stirm(Purdue University West Lafayette), Tomoko Miura(Purdue University West Lafayette), Edward N. Ashworth(University of Maine), Ray A. Bressan(Purdue University West Lafayette), Dae‐Jin Yun(Gyeongsang National University), Paul M. Hasegawa(Purdue University West Lafayette)
The Plant Cell
April 1, 2007
Cited by 783Open Access
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Abstract

SIZ1 is a SUMO E3 ligase that facilitates conjugation of SUMO to protein substrates. siz1-2 and siz1-3 T-DNA insertion alleles that caused freezing and chilling sensitivities were complemented genetically by expressing SIZ1, indicating that the SIZ1 is a controller of low temperature adaptation in plants. Cold-induced expression of CBF/DREB1, particularly of CBF3/DREB1A, and of the regulon genes was repressed by siz1. siz1 did not affect expression of ICE1, which encodes a MYC transcription factor that is a controller of CBF3/DREB1A. A K393R substitution in ICE1 [ICE1(K393R)] blocked SIZ1-mediated sumoylation in vitro and in protoplasts identifying the K393 residue as the principal site of SUMO conjugation. SIZ1-dependent sumoylation of ICE1 in protoplasts was moderately induced by cold. Sumoylation of recombinant ICE1 reduced polyubiquitination of the protein in vitro. ICE1(K393R) expression in wild-type plants repressed cold-induced CBF3/DREB1A expression and increased freezing sensitivity. Furthermore, expression of ICE1(K393R) induced transcript accumulation of MYB15, which encodes a MYB transcription factor that is a negative regulator of CBF/DREB1. SIZ1-dependent sumoylation of ICE1 may activate and/or stabilize the protein, facilitating expression of CBF3/DREB1A and repression of MYB15, leading to low temperature tolerance.


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