TetrahymenaTelomerase Is Active as a Monomer
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Published:2003-12
Issue:12
Volume:14
Page:4794-4804
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ISSN:1059-1524
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Container-title:Molecular Biology of the Cell
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language:en
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Short-container-title:MBoC
Author:
Bryan Tracy M.1, Goodrich Karen J.2, Cech Thomas R.2
Affiliation:
1. Children's Medical Research Institute, Westmead, New South Wales 2145, Australia 2. Howard Hughes Medical Institute and Department of Chemistry and Biochemistry, University of Colorado, Boulder, Colorado 80309-0215
Abstract
Telomerase is an enzyme that utilizes an internal RNA molecule as a template for the extension of chromosomal DNA ends. The catalytic core of telomerase consists of the RNA subunit and a protein reverse transcriptase subunit, known as telomerase reverse transcriptase (TERT). It has previously been shown that both yeast and human telomerase can form dimers or multimers in which one RNA in the complex can influence the activity of another. To test the proposal that dimerization might be essential for telomerase activity, we sought to determine whether Tetrahymena thermophila telomerase is active as a dimer or a monomer. Recombinant Tetrahymena telomerase eluted from a gel filtration column at the size of a monomeric complex (one RNA plus one TERT), and those fractions showed processive telomerase activity. We were unable to detect dimerization of Tetrahymena telomerase by coprecipitation experiments, by using tags on either the TERT protein or telomerase RNA. Therefore, a majority, if not all, of the recombinant Tetrahymena telomerase in our reconstitution system is present as a monomeric complex. We were also unable to detect dimerization of native telomerase from mating and vegetative Tetrahymena cell extracts. These results demonstrate that Tetrahymena telomerase does not need to dimerize to be active and processive.
Publisher
American Society for Cell Biology (ASCB)
Subject
Cell Biology,Molecular Biology
Reference38 articles.
1. Aigner, S., Postberg, J., Lipps, H.J., and Cech, T.R. (2003). The Euplotes La motif protein p43 has properties of a telomerase-specific subunit.Biochemistry42, 5736–5747. 2. Arai, K., Masutomi, K., Khurts, S., Kaneko, S., Kobayashi, K., and Murakami, S. (2002). Two independent regions of human telomerase reverse transcriptase (hTERT) are important for its oligomerization and telomerase activity.J. Biol. Chem.277, 8538–8544. 3. Armbruster, B.N., Banik, S.S.R., Guo, C., Smith, A.C., and Counter, C.M. (2001). N-terminal domains of the human telomerase catalytic subunit required for enzyme activityin vivo.Mol. Cell. Biol.21, 7775–7786. 4. Beattie, T.L., Zhou, W., Robinson, M.O., and Harrington, L. (1998). Reconstitution of human telomerase activityin vitro.Curr. Biol.8, 177–180. 5. Beattie, T.L., Zhou, W., Robinson, M.O., and Harrington, L. (2001). Functional multimerization of the human telomerase reverse transcriptase.Mol. Cell. Biol.21, 6151–6160.
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