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Updated: Feb 20, 2026

Chromosome Replicating Timing Combined with Fluorescent In situ Hybridization
Published on: December 10, 2012
Genomic Characterization of Chromosomal Insertions: Insights into the Mechanisms Underlying Chromothripsis
Takema Kato1, Yuya Ouchi, Hidehito Inagaki
1Division of Molecular Genetics, Institute for Comprehensive Medical Science (ICMS), and Genome and Transcriptome Analysis Center, Fujita Health University, Toyoake, Department of Pediatrics, Central Hospital, Aichi Human Service Center, Kasugai, Department of Pediatrics, Toyota Kosei Hospital, Toyota, Department of Obstetrics and Gynecology, Faculty of Medicine, Kagoshima University, and Takeuchi Ladies Clinic/Infertility Center, Kagoshima, and Education Center, Asahikawa Medical University, Hokkaido, Japan.
Abstract:
Chromosomal insertions are rare structural rearrangements, and the molecular mechanisms underlying their origin are unknown. In this study, we used whole genome sequencing to analyze breakpoints and junction sequences in 4 patients with chromosomal insertions. Our analysis revealed that none of the 4 cases involved a simple insertion mediated by a 3-chromosomal breakage and rejoining events. The inserted fragments consisted of multiple pieces derived from a localized genomic region, which were shuffled and rejoined in a disorderly fashion with variable copy number alterations. The junctions were blunt ended or with short microhomologies or short microinsertions, suggesting the involvement of nonhomologous end-joining. In one case, analysis of the parental origin of the chromosomes using nucleotide variations within the insertion revealed that maternal chromosomal segments were inserted into the paternal chromosome. This patient also carried both maternal alleles, suggesting the presence of zygotic trisomy. These data indicate that chromosomal shattering may occur in association with trisomy rescue in the early postzygotic stage.
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