Open access · OA
via OpenAlex
Chromosome-specific telomere lengths and the minimal functional telomere revealed by nanopore sequencing
Samantha L. Sholes, Kayarash Karimian, Ariel Gershman, Thomas J. Kelly, Winston Timp, Carol W. Greider
Genome Research · 2021 · ▲ 70 citations
Abstract
We developed a method to tag telomeres and measure telomere(definition) length by nanopore sequencing in the yeast S. cerevisiae . Nanopore allows long-read sequencing through the telomere, through the subtelomere, and into unique chromosomal sequence, enabling assignment of telomere length to a specific chromosome end. We observed chromosome end–specific telomere lengths that were stable over 120 cell divisions. These stable chromosome-specific telomere lengths may be explained by slow clonal variation or may represent a new biological mechanism that maintains equilibrium unique to each chromosome end. We examined the role of RIF1 and TEL1 in telomere length regulation and found that TEL1 is epistatic to RIF1 at most telomeres, consistent with the literature. However, at telomeres that lack subtelomeric Y′ sequences, tel1Δ rif1Δ double mutants had a very small, but significant, increase in telomere length compared with the tel1Δ single mutant, suggesting an influence of Y′ elements on telomere length regulation. We sequenced telomeres in a telomerase-null mutant ( est2Δ ) and found the minimal telomere length to be ∼75 bp. In these est2Δ mutants, there were apparent telomere recombination events at individual telomeres before the generation of survivors, and these events were significantly reduced in est2Δ rad52Δ double mutants. The rate of telomere shortening in the absence of telomerase was similar across all chromosome ends at ∼5 bp per generation. This new method gives quantitative, high-resolution telomere length measurement at each individual chromosome end and suggests possible new biological mechanisms regulating telomere length.
◌ CITATION ONLY
Full text is not openly licensed for redistribution here. Read it at the source:
Provenance
- Source
- OpenAlex
- DOI
- 10.1101/gr.275868.121
- Canonical
- link ↗
- Fetched
- 2026-06-09 MST
Cite this
APA
Sholes, S.L., Karimian, K., Gershman, A., Kelly, T.J., Timp, W., & Greider, C.W. (2021). Chromosome-specific telomere lengths and the minimal functional telomere revealed by nanopore sequencing. <em>Genome Research</em>. https://doi.org/10.1101/gr.275868.121
Vancouver
Sholes SL, Karimian K, Gershman A, Kelly TJ, Timp W, Greider CW. Chromosome-specific telomere lengths and the minimal functional telomere revealed by nanopore sequencing. Genome Research. 2021. doi:10.1101/gr.275868.121.
BibTeX
@article{samantha2021Chromo,
title = {Chromosome-specific telomere lengths and the minimal functional telomere revealed by nanopore sequencing},
author = {Samantha L. Sholes and Kayarash Karimian and Ariel Gershman and Thomas J. Kelly and Winston Timp and Carol W. Greider},
journal = {Genome Research},
year = {2021},
doi = {10.1101/gr.275868.121},
}
Research neighborhood
References, citing works, and semantically nearest findings. Click a node to open it.
Related findings
The Journal of Infectious Diseases 2015
Open access · OA
Telomere Length as an Indicator of the Robustness of B- and T-Cell Response to Influenza in Older Adults
Vitamins and hormones 2022
Citation only
Telomere length and vitamin B12
Genes & Development 2004
Open access · OA
<i>Drosophila atm/telomere fusion</i> is required for telomeric localization of HP1 and telomere position effect
Nucleic Acids Research 2006
Open access · OA
Telomeres, chromosome instability and cancer
Frontiers in bioscience 2007
Open access · OA
Telomere dysfunction, genome instability and cancer
Pediatric Research 2002
Citation only