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Article

Positive and Negative Regulation of Tetrahymena Telomerase Holoenzyme

, &
Pages 2074-2083 | Received 10 Nov 2006, Accepted 31 Dec 2006, Published online: 27 Mar 2023
 

Abstract

Telomerase replenishes the telomeric repeats that cap eukaryotic chromosome ends. To perform DNA synthesis, the active site of telomerase reverse transcriptase (TERT) copies a template within the integral telomerase RNA (TER). In vivo, TERT and TER and additional subunits form a telomerase holoenzyme capable of telomere elongation. We previously purified epitope-tagged Tetrahymena thermophila TERT and characterized two of the associated proteins. Here we characterize the remaining two proteins that were enriched by TERT purification. The primary sequence of the p75 polypeptide lacks evident homology with other proteins, whereas the p20 polypeptide is the Tetrahymena ortholog of a conserved multifunctional protein, Skp1. Genetic depletion of p75 induced telomere shortening without affecting the accumulation of TER or TERT, suggesting that p75 promotes telomerase function at the telomere. Affinity purification of p75 coenriched telomerase activity and each other known telomerase holoenzyme protein. On the other hand, genetic depletion of Skp1p induced telomere elongation, suggesting that this protein plays a negative regulatory role in the maintenance of telomere length homeostasis. Affinity purification of Skp1p did not detectably enrich active telomerase but did copurify ubiquitin ligase machinery. These studies reveal additional complexity in the positive and negative regulation of Tetrahymena telomerase function.

SUPPLEMENTAL MATERIAL

We thank Sharleen Zhou and Lori Kohlstaedt for peptide sequencing, the Lemaux lab for the use of their biolistic transformation apparatus, Quinton Tieu for help in the characterization of p75, and Bosun Min for critical reading of the manuscript.

This research was funded by N.I.H. grant GM54198 to K.C.

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