AI Article Synopsis

  • Researchers created induced pluripotent stem cells (iPSCs) from two families with RUNX1 mutations to study their link to leukemia.
  • One mutation caused both low platelet counts and leukemia, while the other only led to low platelet counts without leukemia.
  • The study found that reduced RUNX1 levels lead to issues in blood cell development and increased risk for leukemia, suggesting that the amount of RUNX1 protein influences the severity of symptoms in patients.

Article Abstract

To explore how RUNX1 mutations predispose to leukemia, we generated induced pluripotent stem cells (iPSCs) from 2 pedigrees with germline RUNX1 mutations. The first, carrying a missense R174Q mutation, which acts as a dominant-negative mutant, is associated with thrombocytopenia and leukemia, and the second, carrying a monoallelic gene deletion inducing a haploinsufficiency, presents only as thrombocytopenia. Hematopoietic differentiation of these iPSC clones demonstrated profound defects in erythropoiesis and megakaryopoiesis and deregulated expression of RUNX1 targets. iPSC clones from patients with the R174Q mutation specifically generated an increased amount of granulomonocytes, a phenotype reproduced by an 80% RUNX1 knockdown in the H9 human embryonic stem cell line, and a genomic instability. This phenotype, found only with a lower dosage of RUNX1, may account for development of leukemia in patients. Altogether, RUNX1 dosage could explain the differential phenotype according to RUNX1 mutations, with a haploinsufficiency leading to thrombocytopenia alone in a majority of cases whereas a more complete gene deletion predisposes to leukemia.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4347283PMC
http://dx.doi.org/10.1182/blood-2014-06-585513DOI Listing

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