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Full-Text Articles in Molecular Biology

High-Throughput Single-Molecule Telomere Characterization, Jennifer Mccaffrey, Eleanor Young, Katy Lassahn, Justin Sibert, Steven Pastor, Harold Riethman, Ming Xiao Nov 2017

High-Throughput Single-Molecule Telomere Characterization, Jennifer Mccaffrey, Eleanor Young, Katy Lassahn, Justin Sibert, Steven Pastor, Harold Riethman, Ming Xiao

Medical Diagnostics & Translational Sciences Faculty Publications

We have developed a novel method that enables global subtelomere and haplotype-resolved analysis of telomere lengths at the single-molecule level. An in vitro CRISPR/Cas9 RNA-directed nickase system directs the specific labeling of human (TTAGGG) n DNA tracts in genomes that have also been barcoded using a separate nickase enzyme that recognizes a 7bp motif genome-wide. High-throughput imaging and analysis of large DNA single molecules from genomes labeled in this fashion using a nanochannel array system permits mapping through subtelomere repeat element (SRE) regions to unique chromosomal DNA while simultaneously measuring the (TTAGGG) n tract length at the end of each …


High-Throughput Single-Molecule Mapping Links Subtelomeric Variants And Long-Range Haplotypes With Specific Telomeres, Eleanor Young, Steven Pastor, Ramakrishnan Rajagopalan, Jennifer Mccaffrey, Justin Sibert, Angel C. Y. Mak, Pui-Yan Kwok, Harold Riethman, Ming Xiao Jan 2017

High-Throughput Single-Molecule Mapping Links Subtelomeric Variants And Long-Range Haplotypes With Specific Telomeres, Eleanor Young, Steven Pastor, Ramakrishnan Rajagopalan, Jennifer Mccaffrey, Justin Sibert, Angel C. Y. Mak, Pui-Yan Kwok, Harold Riethman, Ming Xiao

Medical Diagnostics & Translational Sciences Faculty Publications

Accurate maps and DNA sequences for human subtelomere regions, along with detailed knowledge of subtelomere variation and long-range telomereterminal haplotypes in individuals, are critical for understanding telomere function and its roles in human biology. Here, we use a highly automated whole genome mapping technology in nano-channel arrays to analyze large terminal human chromosome segments extending from chromosome-specific subtelomere sequences through subtelomeric repeat regions to terminal (TTAGGG) n repeat tracts. We establish detailed maps for subtelomere gap regions in the human reference sequence, detect many new large subtelomeric variants and demonstrate the feasibility of long-range haplotyping through segmentally duplicated subtelomere regions. …