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[Accepted Article Manuscript Version (Postprint)] Identification and Functional Characterization of Arabidopsis PEROXIN4 and the Interacting Protein PEROXIN22
The Plant Cell (2005)
  • Bethany K. Zolman, Rice University
  • Melanie Monroe-Augustus, Rice University
  • Illeana D. Silva, Rice University
  • Bonnie Bartel, Rice University
Abstract
Peroxins are genetically defined as proteins necessary for peroxisome biogenesis. By screening for reduced response to indole-3-butyric acid, which is metabolized to active auxin in peroxisomes, we isolated an Arabidopsis thaliana peroxin4 (pex4) mutant. This mutant displays sucrose-dependent seedling development and reduced lateral root production, characteristics of plant peroxisome malfunction. We used yeast two-hybrid analysis to determine that PEX4, an apparent ubiquitinconjugating enzyme, interacts with a previously unidentified Arabidopsis protein, PEX22. A pex4 pex22 double mutant enhanced pex4 defects, confirming that PEX22 is a peroxin. Expression of both Arabidopsis genes together complemented yeast pex4 or pex22 mutant defects, whereas expression of either gene individually failed to rescue the corresponding yeast mutant. Therefore, it is likely that the Arabidopsis proteins can function similarly to the yeast PEX4–PEX22 complex, with PEX4 ubiquitinating substrates and PEX22 tethering PEX4 to the peroxisome. However, the severe sucrose dependence of the pex4 pex22 mutant is not accompanied by correspondingly strong defects in peroxisomal matrix protein import, suggesting that this peroxin pair may have novel plant targets in addition to those important in fungi. Isocitrate lyase is stabilized in pex4 pex22, indicating that PEX4 and PEX22 may be important during the remodeling of peroxisome matrix contents as glyoxysomes transition to leaf peroxisomes.
Disciplines
Publication Date
December 1, 2005
DOI
10.1105/tpc.105.035691
Publisher Statement
© American Society of Plant Biologists.
Citation Information
Bethany K. Zolman, Melanie Monroe-Augustus, Illeana D. Silva and Bonnie Bartel. "[Accepted Article Manuscript Version (Postprint)] Identification and Functional Characterization of Arabidopsis PEROXIN4 and the Interacting Protein PEROXIN22" The Plant Cell Vol. 17 Iss. 12 (2005) p. 3422 - 3435
Available at: http://works.bepress.com/bethany-zolman/8/