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Chromosomal instability in aneuploid acute lymphoblastic leukemia associates with disease progression

  • Oscar Molina
  • , Carmen Ortega-Sabater
  • , Namitha Thampi
  • , Narcís Fernández-Fuentes
  • , Mercedes Guerrero-Murillo
  • , Alba Martínez-Moreno
  • , Meritxell Vinyoles
  • , Talía Velasco-Hernández
  • , Clara Bueno
  • , Juan L Trincado
  • , Isabel Granada
  • , Diana Campos
  • , Carles Giménez
  • , Judith M Boer
  • , Monique L den Boer
  • , Gabriel F Calvo
  • , Mireia Camós
  • , Jose-Luis Fuster
  • , Pablo Velasco
  • , Paola Ballerini
  • Franco Locatelli, Charles G Mullighan, Diana C J Spierings, Floris Foijer, Víctor M Pérez-García, Pablo Menéndez

Research output: Contribution to journalArticlepeer-review

6 Citations (Scopus)

Abstract

Chromosomal instability (CIN) lies at the core of cancer development leading to aneuploidy, chromosomal copy-number heterogeneity (chr-CNH) and ultimately, unfavorable clinical outcomes. Despite its ubiquity in cancer, the presence of CIN in childhood B-cell acute lymphoblastic leukemia (cB-ALL), the most frequent pediatric cancer showing high frequencies of aneuploidy, remains unknown. Here, we elucidate the presence of CIN in aneuploid cB-ALL subtypes using single-cell whole-genome sequencing of primary cB-ALL samples and by generating and functionally characterizing patient-derived xenograft models (cB-ALL-PDX). We report higher rates of CIN across aneuploid than in euploid cB-ALL that strongly correlate with intraclonal chr-CNH and overall survival in mice. This association was further supported by in silico mathematical modeling. Moreover, mass-spectrometry analyses of cB-ALL-PDX revealed a “CIN signature” enriched in mitotic-spindle regulatory pathways, which was confirmed by RNA-sequencing of a large cohort of cB-ALL samples. The link between the presence of CIN in aneuploid cB-ALL and disease progression opens new possibilities for patient stratification and offers a promising new avenue as a therapeutic target in cB-ALL treatment.

Original languageEnglish
Article number38177531
Pages (from-to)64-92
Number of pages29
JournalEMBO molecular medicine
Volume16
Issue number1
DOIs
Publication statusPublished - 16 Jan 2024

Keywords

  • Chromosomal Instability; Aneuploidy; Childhood B-cell Acute Lymphoblastic Leukemia; Disease Models

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