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Telomerase Mechanism of Telomere Synthesis
R. Alex Wu, Heather E. Upton, Jacob M. Vogan, Kathleen Collins
Annual Review of Biochemistry · 2017 · ▲ 224 citations
Abstract
Telomerase is the essential reverse transcriptase required for linear chromosome maintenance in most eukaryotes. Telomerase supplements the tandem array of simple-sequence repeats at chromosome ends to compensate for the DNA erosion inherent in genome replication. The template for telomerase reverse transcriptase is within the RNA subunit of the ribonucleoprotein complex, which in cells contains additional telomerase holoenzyme proteins that assemble the active ribonucleoprotein and promote its function at telomeres. Telomerase is distinct among polymerases in its reiterative reuse of an internal template. The template is precisely defined, processively copied, and regenerated by release of single-stranded product DNA. New specificities of nucleic acid handling that underlie the catalytic cycle of repeat synthesis derive from both active site specialization and new motif elaborations in protein and RNA subunits. Studies of telomerase provide unique insights into cellular requirements for genome stability, tissue renewal, and tumorigenesis as well as new perspectives on dynamic ribonucleoprotein machines.
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- 10.1146/annurev-biochem-061516-045019
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- 2026-06-22 MST
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APA
Wu, R.A., Upton, H.E., Vogan, J.M., & Collins, K. (2017). Telomerase Mechanism of Telomere Synthesis. <em>Annual Review of Biochemistry</em>. https://doi.org/10.1146/annurev-biochem-061516-045019
Vancouver
Wu RA, Upton HE, Vogan JM, Collins K. Telomerase Mechanism of Telomere Synthesis. Annual Review of Biochemistry. 2017. doi:10.1146/annurev-biochem-061516-045019.
BibTeX
@article{r2017Telome,
title = {Telomerase Mechanism of Telomere Synthesis},
author = {R. Alex Wu and Heather E. Upton and Jacob M. Vogan and Kathleen Collins},
journal = {Annual Review of Biochemistry},
year = {2017},
doi = {10.1146/annurev-biochem-061516-045019},
}
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