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A CRISPR Dropout Screen Identifies Genetic Vulnerabilities and Therapeutic Targets in Acute Myeloid Leukemia

Cell Reports · 2016 · Vol. 17(4) · pp. 1193–1205
Konstantinos TzelepisHiroko Koike-YusaÉtienne De BraekeleerYilong LiEmmanouil MetzakopianOliver M. DoveyAnnalisa MupoVera GrinkevichMeng LiMilena MazanMalgorzata GozdeckaShuhei OhnishiJonathan CooperMiten PatelThomas McKerrellBin ChenAna Filipa DominguesPaolo GallipoliSarah A. TeichmannHannes PonstinglUltan McDermottJulio Sáez-RodríguezBrian J.P. HuntlyFrancesco IorioCristina PinaGeorge S. VassiliouKosuke Yusa

Abstract

Acute myeloid leukemia (AML) is an aggressive cancer with a poor prognosis, for which mainstream treatments have not changed for decades. To identify additional therapeutic targets in AML, we optimize a genome-wide clustered regularly interspaced short palindromic repeats (CRISPR) screening platform and use it to identify genetic vulnerabilities in AML cells. We identify 492 AML-specific cell-essential genes, including several established therapeutic targets such as DOT1L, BCL2, and MEN1, and many other genes including clinically actionable candidates. We validate selected genes using genetic and pharmacological inhibition, and chose KAT2A as a candidate for downstream study. KAT2A inhibition demonstrated anti-AML activity by inducing myeloid differentiation and apoptosis, and suppressed the growth of primary human AMLs of diverse genotypes while sparing normal hemopoietic stem-progenitor cells. Our results propose that KAT2A inhibition should be investigated as a therapeutic strategy in AML and provide a large number of genetic vulnerabilities of this leukemia that can be pursued in downstream studies.

CRISPR and Genetic EngineeringProtein Degradation and InhibitorsAcute Myeloid Leukemia ResearchCRISPRMyeloid leukemiaBiologyMyeloidCancer researchHaematopoiesisGeneLeukemiaGenome editingProgenitor cell

MeSH terms

p300-CBP-Associated FactorAdultCell DifferentiationGenetic TestingHumansReproducibility of ResultsLeukemia, Myeloid, AcuteApoptosisCell Line, TumorCell ProliferationHistone AcetyltransferasesMolecular Targeted TherapyClustered Regularly Interspaced Short Palindromic Repeats

Funding

  • Wellcome Trust
  • Kay Kendall Leukaemia Fund
  • Medical Research Council
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