The eer5 mutation, which affects a novel proteasome-related subunit, indicates a prominent role for the COP9 signalosome in resetting the ethylene-signaling pathway in Arabidopsis

被引:39
作者
Christians, Matthew J. [1 ]
Robles, Linda M. [1 ]
Zeller, Samantha M. [1 ]
Larsen, Paul B. [1 ]
机构
[1] Univ Calif Riverside, Dept Biochem, Riverside, CA 92521 USA
关键词
Arabidopsis; COP9; CSN; EER5; EIN2; ethylene;
D O I
10.1111/j.1365-313X.2008.03521.x
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
An Arabidopsis mutant, eer5-1, which has an enhanced ethylene response in etiolated seedlings, including hypersensitivity and extreme exaggeration of response to ethylene, was isolated and characterized. As with other identified eer mutants, the enhanced response phenotype of eer5-1 was correlated with failure to induce appropriately a subset of ethylene-regulated genes, suggesting that proper ethylene-responsive gene expression is necessary for resetting the ethylene response pathway. eer5-1 represents a mutation that causes an amino acid substitution in a previously uncharacterized gene, which encodes a protein with a PAM [proteasome COP9 initiation factor (PCI/PINT)-associated module] domain similar to those found in components of the COP9 signalosome (CSN). Genetic analysis shows that manifestation of the eer5 mutant phenotype is solely dependent on ethylene signaling, as the ein2-5 eer5-1 double mutant was indistinguishable from ein2-5 in the presence of saturating ethylene concentrations. In contrast, the ein3-1 eer5-1 double mutant displayed characteristics of an enhanced ethylene response, and this suggests that EER5 regulates ethylene signaling independently of EIN3. Analysis of the EER5 protein indicates that it interacts with the C-terminus of EIN2 and with the CSN, suggesting that EER5 serves as a bridge between EIN2 and the modification or degradation of target proteins, including a proposed group of transcriptional repressors, as part of a resetting mechanism during or following ethylene signaling.
引用
收藏
页码:467 / 477
页数:11
相关论文
共 27 条
[1]  
Abeles FB., 1992, ETHYLENE PLANT BIOL
[2]   EIN2, a bifunctional transducer of ethylene and stress responses in Arabidopsis [J].
Alonso, JM ;
Hirayama, T ;
Roman, G ;
Nourizadeh, S ;
Ecker, JR .
SCIENCE, 1999, 284 (5423) :2148-2152
[3]   Five components of the ethylene-response pathway identified in a screen for weak ethylene-insensitive mutants in Arabidopsis [J].
Alonso, JM ;
Stepanova, AN ;
Solano, R ;
Wisman, E ;
Ferrari, S ;
Ausubel, FM ;
Ecker, JR .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2003, 100 (05) :2992-2997
[4]   Molecular mechanisms of ethylene signaling in Arabidopsis [J].
Benavente, LM ;
Alonso, JM .
MOLECULAR BIOSYSTEMS, 2006, 2 (3-4) :165-173
[5]   Short-term growth responses to ethylene in arabidopsis seedlings are EIN3/EIL1 independent [J].
Binder, BM ;
Mortimore, LA ;
Stepanova, AN ;
Ecker, JR ;
Bleecker, AB .
PLANT PHYSIOLOGY, 2004, 136 (02) :2921-2927
[6]   The Arabidopsis EIN3 binding F-box proteins EBF1 and EBF2 have distinct but overlapping roles in ethylene signaling [J].
Binder, Brad M. ;
Walker, Joseph M. ;
Gagne, Jennifer M. ;
Emborg, Thomas J. ;
Hemmann, Georg ;
Bleecker, Anthony B. ;
Vierstra, Richard D. .
PLANT CELL, 2007, 19 (02) :509-523
[7]   Arabidopsis thaliana ethylene-responsive element binding protein (AtEBP), an ethylene-inducible, GCC box DNA-binding protein interacts with an ocs element binding protein [J].
Buttner, M ;
Singh, KB .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1997, 94 (11) :5961-5966
[8]   Loss-of-function mutations in the ethylene receptor ETR1 cause enhanced sensitivity and exaggerated response to ethylene in Arabidopsis [J].
Cancel, JD ;
Larsen, PB .
PLANT PHYSIOLOGY, 2002, 129 (04) :1557-1567
[9]   Activation of the ethylene gas response pathway in Arabidopsis by the nuclear protein ETHYLENE-INSENSITIVE3 and related proteins [J].
Chao, QM ;
Rothenberg, M ;
Solano, R ;
Roman, G ;
Terzaghi, W ;
Ecker, JR .
CELL, 1997, 89 (07) :1133-1144
[10]   Mutational loss of the prohibitin AtPHB3 results in an extreme constitutive ethylene response phenotype coupled with partial loss of ethylene-inducible gene expression in Arabidopsis seedlings [J].
Christians, Matthew J. ;
Larsen, Paul B. .
JOURNAL OF EXPERIMENTAL BOTANY, 2007, 58 (08) :2237-2248