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Characterizing cytosine methylation of polymorphic transposable element insertions using the human pangenome resources

  • Human Pangenome Reference Consortium
  • Washington University St. Louis
  • Tel Aviv University
  • European Molecular Biology Laboratory
  • Mohammed Bin Rashid University of Medicine and Health Sciences
  • Stanford University
  • National Institutes of Health
  • University of California at Santa Cruz
  • University of Washington
  • Rockefeller University
  • Translational Genomics Research Institute
  • Human Technopole
  • Icahn School of Medicine at Mount Sinai
  • University of Florida
  • McGill University
  • Victor Phillip Dahdaleh Institute of Genomic Medicine
  • University of Tennessee Health Science Center
  • Alphabet Inc.
  • University of Southern California
  • Yale University
  • University of Florence
  • Arizona State University
  • Heinrich Heine University Düsseldorf
  • German Diabetes Center Düsseldorf
  • The First Affiliated Hospital of Xi’an Jiaotong University
  • Wellcome Trust Genome Campus
  • Howard Hughes Medical Institute
  • Université de Montpellier
  • Institut universitaire de France
  • University of California at San Diego
  • Dana-Farber Cancer Institute
  • University of Kansas
  • University of Manchester
  • University of California at Los Angeles
  • University of California at Berkeley
  • Sidra Medical and Research Center
  • Harvard University
  • University of California at Davis
  • Johns Hopkins University
  • University of Pennsylvania
  • University of California at Irvine
  • Sun Yat-Sen University
  • Pennsylvania State University
  • Jackson Laboratory
  • Qatar University
  • Weill Cornel Medical College
  • University of Toulouse
  • MATCH Biosystems S.L.
  • Miguel Hernández University
  • The University of Tokyo
  • University of Pisa
  • The Center for Bio- and Medical Technologies
  • National Research Council of Italy
  • University of Helsinki
  • Higher School of Economics
  • Coriell Institute for Medical Research
  • University of Amsterdam
  • University of Cambridge
  • Al Jalila Foundation Research Centre
  • GenomeArc Inc.
  • University of Rome La Sapienza
  • Loma Linda University Health
  • PacBio

Research output: Contribution to journalArticlepeer-review

Abstract

Cytosine methylation, a crucial epigenetic modification, plays a vital role in genomic regulation. Leveraging the advancements in long-read sequencing, we investigate the methylation patterns of polymorphic transposable element (TE) insertions of human lymphoblastoid cell lines (LCLs). We validate the high concordance between long-read methylation calls and the conventional whole-genome bisulfite sequencing (WGBS) method. We then aim to establish general rules of TE methylation with our data by addressing three key questions: (1) what is the methylation profile of each insertion; (2) do newly inserted TEs adopt the methylation pattern of their genomic context; and (3) do new TE insertions affect the methylation of their flanking regions. Although most non-TE insertions exhibit DNA methylation patterns consistent with their genomic context, TE insertions are generally highly methylated, exhibiting distinct, class-specific patterns with some variation within TE bodies. A small percentage of Alu insertions are hypomethylated, particularly those inserted within hypomethylated CpG islands. We also reveal that majority of TEs exhibited minimal impact on nearby regions, although numerous exceptions exist in which the methylation status of TEs spread into nearby regions. In conclusion, although TE insertions primarily exhibit methylation patterns restricted within their boundaries, some TEs are able to affect the methylation level of their genomic neighborhoods. At last, our findings are limited to human LCLs, and more comprehensive analysis would be needed to test the rules we found here on a broader spectrum of cell types and developmental stages.

Original languageEnglish
Pages (from-to)1108-1124
Number of pages17
JournalGenome Research
Volume36
Issue number6
DOIs
StatePublished - Jun 2026
Externally publishedYes

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