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Plant Physiology 84:332-336 (1987)
© 1987 American Society of Plant Biologists

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Metabolism and Enzymology

Demonstration of ATP-Dependent, Ubiquitin-Conjugating Activities in Higher Plants 1

Richard D. Vierstra

Department of Horticulture, University of Wisconsin-Madison, Madison, Wisconsin 53706

Ubiquitin is a highly conserved, 76-amino acid polypeptide with several important regulatory functions in both plants and animals that all arise from its covalent ligation to other cellular proteins. Here, we demonstrate that higher plants have the capacity to conjugate ubiquitin to other plant proteins in vitro. Using 125I-labeled human ubiquitin as a substrate, conjugating activities were observed in crude etiolated tissue extracts from all species tested, including oats, rye, barley, corn, zucchini squash, pea, soybean, and sunflower. The reaction has a soluble distribution, is specific for ATP, and requires the protease inhibitor, leupeptin, to protect ubiquitin from inactivation during the assay. Conjugation is inhibited by N-ethylmaleimide and high concentrations of 2-mercaptoethanol suggesting that the mechanism of ubiquitin ligation in plants involves a similar thiolester intermediate to that found in the mammalian pathway. The conjugating activity in etiolated oat extracts is extremely labile with a half-life of about 20 minutes at 30°C. Detectable but low ATP-stimulated, conjugating activities were also observed in extracts from dry seeds and green leaves of oats. In addition to this conjugating activity, crude plant extracts have the capacity to degrade ubiquitin-protein conjugates formed in vitro. These results demonstrate that higher plants contain several of the enzymic activities necessary for ubiquitin's functions and provide a method for assaying ubiquitin conjugation in vitro.


1 Supported by grants from the National Science Foundation (DMB-8409210), the United States Department of Agriculture-Competitive Research Grants Office (85-CRCR-1-1547), and the Research Division of the College of Agriculture and Life Sciences (Hatch 2858).




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J. Biol. Chem.Home page
Jör. Durner and P. Böger
Ubiquitin in the Prokaryote Anabaena variabilis
J. Biol. Chem., February 24, 1995; 270(8): 3720 - 3725.
[Abstract] [Full Text] [PDF]




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Copyright © 1987 by the American Society of Plant Biologists