The Hidden Genomic and Transcriptomic Plasticity of Giant Marker Chromosomes in Cancer

Author:

Macchia Gemma1,Severgnini Marco2,Purgato Stefania3,Tolomeo Doron1,Casciaro Hilen1,Cifola Ingrid2,L’Abbate Alberto1,Loverro Anna1,Palumbo Orazio4,Carella Massimo4,Bianchini Laurence5,Perini Giovanni3,De Bellis Gianluca2,Mertens Fredrik6,Rocchi Mariano1,Storlazzi Clelia Tiziana1

Affiliation:

1. Department of Biology, University of Bari Aldo Moro, 70125 Italy

2. Institute for Biomedical Technologies, Consiglio Nazionale delle Ricerche, Segrate, 20090 Italy

3. Department of Pharmacy and Biotechnology, University of Bologna, 40126 Italy

4. Laboratorio di Genetica Medica, Istituto di Ricovero e Cura a Carattere Scientifico, Casa Sollievo della Sofferenza, San Giovanni Rotondo, 71013 Italy

5. Laboratory of Solid Tumor Genetics, Université Côte d’Azur, Centre Nationnal de la Recherche Scientifique, Institute of Research on Cancer and Aging in Nice, 06108 France

6. Department of Clinical Genetics, University and Regional Laboratories, Lund University, 22100 Sweden

Abstract

Abstract Neocentromeres contribute to cancer progression by mitotically stabilizing acentric chromosomes containing amplified oncogenes. Macchia et al. show that... Genome amplification in the form of rings or giant rod-shaped marker chromosomes (RGMs) is a common genetic alteration in soft tissue tumors. The mitotic stability of these structures is often rescued by perfectly functioning analphoid neocentromeres, which therefore significantly contribute to cancer progression. Here, we disentangled the genomic architecture of many neocentromeres stabilizing marker chromosomes in well-differentiated liposarcoma and lung sarcomatoid carcinoma samples. In cells carrying heavily rearranged RGMs, these structures were assembled as patchworks of multiple short amplified sequences, disclosing an extremely high level of complexity and definitely ruling out the existence of regions prone to neocentromere seeding. Moreover, by studying two well-differentiated liposarcoma samples derived from the onset and the recurrence of the same tumor, we documented an expansion of the neocentromeric domain that occurred during tumor progression, which reflects a strong selective pressure acting toward the improvement of the neocentromeric functionality in cancer. In lung sarcomatoid carcinoma cells we documented, extensive “centromere sliding” phenomena giving rise to multiple, closely mapping neocentromeric epialleles on separate coexisting markers occur, likely due to the instability of neocentromeres arising in cancer cells. Finally, by investigating the transcriptional activity of neocentromeres, we came across a burst of chimeric transcripts, both by extremely complex genomic rearrangements, and cis/trans-splicing events. Post-transcriptional editing events have been reported to expand and variegate the genetic repertoire of higher eukaryotes, so they might have a determining role in cancer. The increased incidence of fusion transcripts, might act as a driving force for the genomic amplification process, together with the increased transcription of oncogenes.

Publisher

Oxford University Press (OUP)

Subject

Genetics

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