Multiomic profiling links L1 retrotransposition to genomic instability and ecDNA in bladder cancer
Abstract
Abstract Bladder cancer is frequent and highly recurrent. Despite recent advances, knowledge gaps remain in molecular mechanisms underlying disease progression. In this study, we apply integrated multi-omic analyses to a cohort of 48 bladder cancer patients to comprehensively profile genetic, epigenetic, transcriptomic, and spatial features. Combining cell-free DNA sequencing, long-read tumor DNA-sequencing, RNA-sequencing, and spatial transcriptomics, we explore molecular alterations driving bladder cancer. We find frequent somatic LINE-1 (L1) insertions, and show that these L1 insertions are active and occur early in bladder cancer development. We link somatic L1 insertion with downstream genomic rearrangements and chromosomal instability, including increased structural variant and extrachromosomal DNA (ecDNA) counts in patients with high L1 counts. We identify variable ecDNA enrichment across tissue architecture, with highest enrichment overlapping differential expression of APOBEC3B and immune response pathways. In summary, our results support a model whereby L1 retrotransposition triggers downstream genomic instability and viral mimicry response.
Article Details
Authors (25)
Sophia J. Pribus
Ivana Osredek
Jan Otoničar
Milena Simovic-Lorenz
Chiara Giovenino
Anne Rademacher
Sina Jasmin Wille
Cecilia Berzain Battioni
Michael Scherer
Sergio Manzano-Sanchez
Andreas Kienzle
Urja Parekh
Laura Villacorta
Vladimir Benes
Genomics Core Facility, EMBL
Pooja Sant
Jan-Philipp Mallm
Karsten Brand
Karsten Rippe
Angelika B. Riemer
Holger Sültmann
Christoph Plass
Mladen Stankovic
Jan O. Korbel
Tobias Rausch
Aurélie Ernst