Publication | Open Access
Single cell multi-omics analysis of chromothriptic medulloblastoma highlights genomic and transcriptomic consequences of genome instability
11
Citations
45
References
2021
Year
Unknown Venue
Abstract ChromothripsisGeneticsMultiomicsSomatic EventsGenomicsEpigeneticsTumor BiologyTumor HeterogeneitySingle Cell SequencingChromothriptic Medulloblastoma HighlightsGenome InstabilityCell DivisionMulti-omics StudySingle-cell GenomicsOmicsChromosomal RearrangementCancer GeneticsSingle-cell AnalysisFunctional GenomicsCell BiologyChromatinSomatic VariantTranscriptomic ConsequencesSpecific RearrangementsMedicine
ABSTRACT Chromothripsis is a form of genome instability, whereby a presumably single catastrophic event generates extensive genomic rearrangements of one or few chromosome(s). However, little is known about the heterogeneity of chromothripsis across different clones from the same tumor, as well as changes in response to treatment. We analyzed single-cell genomic and transcriptomic alterations linked with chromothripsis in human p53-deficient medulloblastoma (n=7). We reconstructed the order of somatic events, identified early alterations likely linked to chromothripsis and depicted the contribution of chromothripsis to malignancy. We characterized subclonal variation of chromothripsis and its effects on double-minute chromosomes, cancer drivers and putatively druggable targets. Furthermore, we highlighted the causative role and the fitness consequences of specific rearrangements in neural progenitors. Graphical Abstract
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