Purification of mammalian telomeric DNA for single-molecule analysis

Here we provide a detailed protocol for the enrichment of telomeric repeats from mouse and human cells. The procedure consists of two successive rounds of digestion with frequently cutting restriction enzymes followed by size fractionation. Around 2 mg of genomic DNA is required, and the procedure l...

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Veröffentlicht in:Nature protocols 2022-06, Vol.17 (6), p.1444-1467
Hauptverfasser: Mazzucco, Giulia, Huda, Armela, Galli, Martina, Zanella, Elia, Doksani, Ylli
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Sprache:eng
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Zusammenfassung:Here we provide a detailed protocol for the enrichment of telomeric repeats from mouse and human cells. The procedure consists of two successive rounds of digestion with frequently cutting restriction enzymes followed by size fractionation. Around 2 mg of genomic DNA is required, and the procedure lasts 5–6 d and yields preparations enriched >800-fold in telomeres. The purified material is suitable for single-molecule analysis of telomere structure, visualizing telomere replication and recombination intermediates by electron microscopy or performing molecular combing at telomeric repeats. No special skills are required for the enrichment procedure, while some assistance is needed in harvesting a large number of plates in a timely fashion at the beginning of the procedure. A smaller-scale version of the protocol that involves one round of digestion and purification requires 200 µg of DNA and enriches telomeres ~50-fold in 4 d is also provided. The latter can be combined with specific labeling for single-molecule analysis of replicating DNA or for long-read sequencing analysis of telomeric repeats. The procedure described here can be adapted to the enrichment of other repetitive elements, based on the use of restriction enzymes that do not cut into the repeat of interest. This protocol describes enrichment of telomeric repeats from human and mouse cells by successive rounds of restriction digestion and size fractionation, resulting in high-quality preparations suitable for single-molecule and structural studies.
ISSN:1754-2189
1750-2799
DOI:10.1038/s41596-022-00684-9