Cargando…

AML with complex karyotype: extreme genomic complexity revealed by combined long-read sequencing and Hi-C technology

Acute myeloid leukemia with complex karyotype (CK-AML) is associated with poor prognosis, which is only in part explained by underlying TP53 mutations. Especially in the presence of complex chromosomal rearrangements, such as chromothripsis, the outcome of CK-AML is dismal. However, this degree of c...

Descripción completa

Detalles Bibliográficos
Autores principales: Klever, Marius-Konstantin, Sträng, Eric, Hetzel, Sara, Jungnitsch, Julius, Dolnik, Anna, Schöpflin, Robert, Schrezenmeier, Jens-Florian, Schick, Felix, Blau, Olga, Westermann, Jörg, Rücker, Frank G., Xia, Zuyao, Döhner, Konstanze, Schrezenmeier, Hubert, Spielmann, Malte, Meissner, Alexander, Melo, Uirá Souto, Mundlos, Stefan, Bullinger, Lars
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The American Society of Hematology 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10632680/
https://www.ncbi.nlm.nih.gov/pubmed/37582288
http://dx.doi.org/10.1182/bloodadvances.2023010887
Descripción
Sumario:Acute myeloid leukemia with complex karyotype (CK-AML) is associated with poor prognosis, which is only in part explained by underlying TP53 mutations. Especially in the presence of complex chromosomal rearrangements, such as chromothripsis, the outcome of CK-AML is dismal. However, this degree of complexity of genomic rearrangements contributes to the leukemogenic phenotype and treatment resistance of CK-AML remains largely unknown. Applying an integrative workflow for the detection of structural variants (SVs) based on Oxford Nanopore (ONT) genomic DNA long-read sequencing (gDNA-LRS) and high-throughput chromosome confirmation capture (Hi-C) in a well-defined cohort of CK-AML identified regions with an extreme density of SVs. These rearrangements consisted to a large degree of focal amplifications enriched in the proximity of mammalian-wide interspersed repeat elements, which often result in oncogenic fusion transcripts, such as USP7::MVD, or the deregulation of oncogenic driver genes as confirmed by RNA-seq and ONT direct complementary DNA sequencing. We termed this novel phenomenon chromocataclysm. Thus, our integrative SV detection workflow combing gDNA-LRS and Hi-C enables to unravel complex genomic rearrangements at a very high resolution in regions hard to analyze by conventional sequencing technology, thereby providing an important tool to identify novel important drivers underlying cancer with complex karyotypic changes.