Related Experiment Video
Updated: Oct 3, 2026

Rapid Analysis of Chromosome Aberrations in Mouse B Lymphocytes by PNA-FISH
Published on: August 19, 2014
Z-DNA-associated genomic instability in the human pangenome
Abstract:
Z-DNA is a non-canonical, left-handed nucleic acid conformation implicated in gene regulation and genome instability. Long-read sequencing and telomere-to-telomere genome assemblies now enable analysis of repetitive regions that were absent or incompletely represented in earlier human references. Leveraging T2T-CHM13 and 464 haplotype-resolved Human Pangenome Reference Consortium assemblies, we mapped predicted Z-DNA-forming sequences and characterized their genomic and mutational landscape. Z-DNA density was broadly similar across human haplotypes and superpopulations but differed substantially between T2T-CHM13 and GRCh38 in several repetitive genomic compartments, including acrocentric loci. Across more than 52 million HPRC variants, predicted Z-DNA-forming loci showed elevated mutation density relative to length-, GC-, and CpG/GpC-matched controls across most mutation classes, with the strongest associations observed for small and intermediate insertions, deletions, and complex insertion- and deletion-like events. Enrichment was concentrated near predicted B-Z junctions and varied by genomic context, with the strongest effects in genic and euchromatic compartments. Similar mutation-class associations were observed in more than 250,000 de novo mutations. Together, these analyses define the mutation-class, spatial, and genomic-context landscape associated with predicted Z-DNA-forming sequences across the human pangenome.
Related Concept Videos
DNA Damage can Stall the Cell Cycle
DNA Damage Can Stall the Cell Cycle
Nucleotide Excision Repair
Cells are regularly exposed to mutagens—factors in the environment that can damage DNA and generate mutations. UV radiation is one of the most common mutagens and is estimated to introduce a significant number of changes in DNA. These include bends or kinks in the structure, which can block DNA replication or transcription. If these errors are not fixed, the damage can cause mutations, which in turn can result in cancer or disease depending on which sequences are...
Nucleotide Excision Repair
Overview of DNA Repair
Chemically...
Overview of DNA Repair
Chemically...
