chromothripsis from dna damage in micronuclei
Here we describe a computational strategy to reliably determine complete whole chromosome haplotypes using a combination of bulk long range sequencing and hi c sequencing. Haplotype phase represents the collective genetic variation between homologous chromosomes and is an essential feature of non haploid genomes. 10 these micronuclei undergo defective dna replication which is slower than dna replication in the main nucleus and causes a proximal dna damage response ddr to be initiated.
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Chromothripsis from dna damage in micronuclei. We demonstrate that this strategy can resolve the haplotypes of parental. In situ hi c sequencing showed that ecdnas preferentially tether near chromosome ends where they re integrate when dna damage is present. The segregation of single chromosomes into individual micronuclei explains why dna fragmentation is isolated to single chromosomes in chromothripsis.



























































































