Literature DB >> 32321174

Impaired condensin complex and Aurora B kinase underlie mitotic and chromosomal defects in hyperdiploid B-cell ALL.

Oscar Molina1,2,3, Meritxell Vinyoles1,2,3, Isabel Granada3,4, Heleia Roca-Ho1,2,3, Francisco Gutierrez-Agüera1,2,3, Luis Valledor5, Carlos M López-López5, Pablo Rodríguez-González5, Juan L Trincado1,2,3, Sofía T Menéndez6,7, Deepali Pal8,9, Paola Ballerini10, Monique L den Boer11, Isabel Plensa12, M Mar Perez-Iribarne12, Sandra Rodríguez-Perales13, María José Calasanz14, Manuel Ramírez-Orellana15, René Rodríguez6,7, Mireia Camós12,16,17, Maria Calvo18, Clara Bueno1,2,3, Pablo Menéndez1,2,3,19.   

Abstract

B-cell acute lymphoblastic leukemia (ALL; B-ALL) is the most common pediatric cancer, and high hyperdiploidy (HyperD) identifies the most common subtype of pediatric B-ALL. Despite HyperD being an initiating oncogenic event affiliated with childhood B-ALL, the mitotic and chromosomal defects associated with HyperD B-ALL (HyperD-ALL) remain poorly characterized. Here, we have used 54 primary pediatric B-ALL samples to characterize the cellular-molecular mechanisms underlying the mitotic/chromosome defects predicated to be early pathogenic contributors in HyperD-ALL. We report that HyperD-ALL blasts are low proliferative and show a delay in early mitosis at prometaphase, associated with chromosome-alignment defects at the metaphase plate leading to robust chromosome-segregation defects and nonmodal karyotypes. Mechanistically, biochemical, functional, and mass-spectrometry assays revealed that condensin complex is impaired in HyperD-ALL cells, leading to chromosome hypocondensation, loss of centromere stiffness, and mislocalization of the chromosome passenger complex proteins Aurora B kinase (AURKB) and Survivin in early mitosis. HyperD-ALL cells show chromatid cohesion defects and an impaired spindle assembly checkpoint (SAC), thus undergoing mitotic slippage due to defective AURKB and impaired SAC activity, downstream of condensin complex defects. Chromosome structure/condensation defects and hyperdiploidy were reproduced in healthy CD34+ stem/progenitor cells upon inhibition of AURKB and/or SAC. Collectively, hyperdiploid B-ALL is associated with a defective condensin complex, AURKB, and SAC.
© 2020 by The American Society of Hematology.

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Year:  2020        PMID: 32321174      PMCID: PMC7413752          DOI: 10.1182/blood.2019002538

Source DB:  PubMed          Journal:  Blood        ISSN: 0006-4971            Impact factor:   22.113


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