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Cell|August 24, 2024
The Fanconi anemia pathway induces chromothripsis and ecDNA-driven cancer drug resistanceJustin L Engel, Xiao Zhang, Mingming Wu, et al.Cell Cycle (Georgetown, Tex.)|June 27, 2017
Interrogating cell division errors using random and chromosome-specific missegregation approachesPeter Ly, Don W ClevelandTrends in Cell Biology|September 14, 2017
Rebuilding Chromosomes After Catastrophe: Emerging Mechanisms of ChromothripsisPeter Ly, Don W ClevelandSeminars in Cell & Developmental Biology|April 7, 2021
Mechanistic origins of diverse genome rearrangements in cancerRashmi Dahiya, Qing Hu, Peter LyMolecular Cytogenetics|April 29, 2016
The major horse satellite DNA family is associated with centromere competenceFederico Cerutti, Riccardo Gamba, Alice Mazzagatti, et al.Cytogenetic and Genome Research|October 25, 2014
Discovery and comparative analysis of a novel satellite, EC137, in horses and other equidsSolomon G Nergadze, Elisa Belloni, Francesca M Piras, et al.Annual Review of Cancer Biology|May 15, 2026
Impact of Chromosomal Instability and Aneuploidy in Cancer DevelopmentAmanda K Mennie, Brittiny Dhital, Peter LyChromosome Research : an International Journal on the Molecular, Supramolecular and Evolutionary Aspects of Chromosome Biology|January 15, 2020
Cellular and genomic approaches for exploring structural chromosomal rearrangementsQing Hu, Elizabeth G Maurais, Peter LyCell Reports|June 14, 2018
Non-random Mis-segregation of Human ChromosomesJoseph Thomas Worrall, Naoka Tamura, Alice Mazzagatti, et al.Life Science Alliance|January 3, 2023
Epigenetic centromere identity is precisely maintained through DNA replication but is uniquely specified among human cellsMegan A Mahlke, Lior Lumerman, Peter Ly, et al.Pageof 6