Clonal dynamics and copy number variants by single‐cell analysis in leukemic evolution of myeloproliferative neoplasms

Author:

Calabresi Laura12,Carretta Chiara34ORCID,Romagnoli Simone12,Rotunno Giada12,Parenti Sandra34,Bertesi Matteo35,Bartalucci Niccolò12ORCID,Rontauroli Sebastiano34ORCID,Chiereghin Chiara6,Castellano Sara34,Gentili Giulia12,Maccari Chiara12,Vanderwert Fiorenza12,Mannelli Francesco12ORCID,Della Porta Matteo6,Manfredini Rossella34,Vannucchi Alessandro Maria12ORCID,Guglielmelli Paola12

Affiliation:

1. Center Research and Innovation of Myeloproliferative Neoplasms (CRIMM) Azienda Ospedaliera‐Universitaria Careggi Florence Italy

2. Department of Experimental and Clinical Medicine University of Florence Florence Italy

3. Centre for Regenerative Medicine "S. Ferrari" University of Modena and Reggio Emilia Modena Italy

4. Department of Biomedical, Metabolic and Neural Sciences University of Modena and Reggio Emilia Modena Italy

5. Department of Life Sciences University of Modena and Reggio Emilia Modena Italy

6. Humanitas Clinical and Research Center‐IRCCS, Rozzano Milan Italy

Abstract

AbstractTransformation from chronic (CP) to blast phase (BP) in myeloproliferative neoplasm (MPN) remains poorly characterized, and no specific mutation pattern has been highlighted. BP‐MPN represents an unmet need, due to its refractoriness to treatment and dismal outcome. Taking advantage of the granularity provided by single‐cell sequencing (SCS), we analyzed paired samples of CP and BP in 10 patients to map clonal trajectories and interrogate target copy number variants (CNVs). Already at diagnosis, MPN present as oligoclonal diseases with varying ratio of mutated and wild‐type cells, including cases where normal hematopoiesis was entirely surmised by mutated clones. BP originated from increasing clonal complexity, either on top or independent of a driver mutation, through acquisition of novel mutations as well as accumulation of clones harboring multiple mutations, that were detected at CP by SCS but were missed by bulk sequencing. There were progressive copy‐number imbalances from CP to BP, that configured distinct clonal profiles and identified recurrences in genes includingNF1,TET2, andBCOR, suggesting an additional level of complexity and contribution to leukemic transformation.EZH2emerged as the gene most frequently affected by single nucleotide and CNVs, that might result in EZH2/PRC2‐mediated transcriptional deregulation, as supported by combined scATAC‐seq and snRNA‐seq analysis of the leukemic clone in a representative case. Overall, findings provided insights into the pathogenesis of MPN‐BP, identified CNVs as a hitherto poorly characterized mechanism and point to EZH2 dysregulation as target. Serial assessment of clonal dynamics might potentially allow early detection of impending disease transformation, with therapeutic implications.

Funder

Cancer Research UK

Ministero della Salute

Publisher

Wiley

Subject

Hematology

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