Mutation ofE1-CONJUGATING ENZYME-RELATED1Decreases RELATED TO UBIQUITIN Conjugation and Alters Auxin Response and Development
Open Access
- 20 April 2007
- journal article
- Published by Oxford University Press (OUP) in Plant Physiology
- Vol. 144 (2), 976-987
- https://doi.org/10.1104/pp.107.100404
Abstract
The ubiquitin-like protein RELATED TO UBIQUITIN (RUB) is conjugated to CULLIN (CUL) proteins to modulate the activity of Skp1-Cullin-F-box (SCF) ubiquitylation complexes. RUB conjugation to specific target proteins is necessary for the development of many organisms, including Arabidopsis (Arabidopsis thaliana). Here, we report the isolation and characterization of e1-conjugating enzyme-related1-1 (ecr1-1), an Arabidopsis mutant compromised in RUB conjugation. The ecr1-1 mutation causes a missense change located two amino acid residues from the catalytic site cysteine, which normally functions to form a thioester bond with activated RUB. A higher ratio of unmodified CUL1 relative to CUL1-RUB is present in ecr1-1 compared to wild type, suggesting that the mutation reduces ECR1 function. The ecr1-1 mutant is resistant to the auxin-like compound indole-3-propionic acid, produces fewer lateral roots than wild type, displays reduced adult height, and stabilizes a reporter fusion protein that is degraded in response to auxin, suggesting reduced auxin signaling in the mutant. In addition, ecr1-1 hypocotyls fail to elongate normally when seedlings are grown in darkness, a phenotype shared with certain other RUB conjugation mutants that is not general to auxin-response mutants. The suite of ecr1-1 molecular and morphological phenotypes reflects roles for RUB conjugation in many aspects of plant growth and development. Certain ecr1-1 elongation defects are restored by treatment with the ethylene-response inhibitor silver nitrate, suggesting that the short ecr1-1 root and hypocotyl result from aberrant ethylene accumulation. Further, silver nitrate supplementation in combination with various auxins and auxin-like compounds reveals that members of this growth regulator family may differentially rely on ethylene signaling to inhibit root growth.Keywords
This publication has 77 references indexed in Scilit:
- A Gain-of-Function Mutation in the Arabidopsis Pleiotropic Drug Resistance Transporter PDR9 Confers Resistance to Auxinic HerbicidesPlant Physiology, 2006
- Arabidopsis Has Two Redundant Cullin3 Proteins That Are Essential for Embryo Development and That Interact with RBX1 and BTB Proteins to Form Multisubunit E3 Ubiquitin Ligase Complexes in VivoPlant Cell, 2005
- Cullin-containing E3 ubiquitin ligases in plant developmentCurrent Opinion in Plant Biology, 2004
- A unique E1-E2 interaction required for optimal conjugation of the ubiquitin-like protein NEDD8Nature Structural & Molecular Biology, 2004
- AtCAND1, A HEAT-Repeat Protein That Participates in Auxin Signaling in ArabidopsisPlant Physiology, 2004
- Regulation of ethylene gas biosynthesis by the Arabidopsis ETO1 proteinNature, 2004
- The auxin-induced transcriptome for etiolated Arabidopsis seedlings using a structure/function approachFunctional & Integrative Genomics, 2003
- Insights into the ubiquitin transfer cascade from the structure of the activating enzyme for NEDD8Nature, 2003
- A novel protein modification pathway related to the ubiquitin systemThe EMBO Journal, 1998
- Arabidopsis auxin-resistance gene AXR1 encodes a protein related to ubiquitin-activating enzyme E1Nature, 1993