High-throughput telomere length measurement at nucleotide resolution using the PacBio high fidelity sequencing platform

Author:

Tham Cheng-YongORCID,Poon LaiFongORCID,Yan TingDong,Koh Javier Yu Peng,Ramlee Muhammad Khairul,Teoh Vania Swee ImmORCID,Zhang SuihanORCID,Cai Yi,Hong Zebin,Lee Gina S.,Liu JinORCID,Song Hai Wei,Hwang William Ying Khee,Teh Bin TeanORCID,Tan Patrick,Xu LifengORCID,Koh Angela S.ORCID,Osato MotomiORCID,Li ShangORCID

Abstract

AbstractTelomeres are specialized nucleoprotein structures at the ends of linear chromosomes. The progressive shortening of steady-state telomere length in normal human somatic cells is a promising biomarker for age-associated diseases. However, there remain substantial challenges in quantifying telomere length due to the lack of high-throughput method with nucleotide resolution for individual telomere. Here, we describe a workflow to capture telomeres using newly designed telobaits in human culture cell lines as well as clinical patient samples and measure their length accurately at nucleotide resolution using single-molecule real-time (SMRT) sequencing. Our results also reveal the extreme heterogeneity of telomeric variant sequences (TVSs) that are dispersed throughout the telomere repeat region. The presence of TVSs disrupts the continuity of the canonical (5’-TTAGGG-3’)n telomere repeats, which affects the binding of shelterin complexes at the chromosomal ends and telomere protection. These findings may have profound implications in human aging and diseases.

Funder

MOH | National Medical Research Council

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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