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The MLL recombinome of acute leukemias in 2017

Leukemia · 2017 · Vol. 32(2) · pp. 273–284
Claus MeyerThomas BurmeisterDaniela GrögerGrigory TsaurЛ. Г. ФечинаAline RennevilleRosemary SuttonNicola C. VennMariana EmerencianoMaria S. Pombo‐de‐OliveiraCaroline Barbieri BlunckBruno A. LopesJan ZunaJan TrkaPaola BalleriniHélène LapillonneMarc De BraekeleerGiovanni CazzanigaL Corral AbascalVincent H. J. van der VeldenÉric DelabesseT S ParkSeung Hwan OhMaria Luiza Macedo SilvaT Lund-AhoVesa JuvonenAndrew S. MooreOlaf HeidenreichJosef VormoorElena ZerkalenkovaYulia OlshanskayaClara BuenoPablo MenéndezAndrea Teigler‐SchlegelUdo zur StadtJana LentesGudrun GöhringAnatoly KustanovichOlga AleinikovaBeat W. SchäferSusanne KubetzkoH O MadsenBernd GruhnXimo DuartePaula GameiroÉric LippertAudrey BidetJ M CayuelaEmmanuelle ClappierCristina N. AlonsoC. Michel ZwaanMarry M. van den Heuvel‐EibrinkShai IzraeliL. TrakhtenbrotPaul A. ArcherJerry HancockAnja MörickeJulia AltenMartin SchrappeMartin StanullaSabine StrehlAndishe AttarbaschiMichael DworzakOskar A. HaasR Panzer-GrümayerŁukasz SędekTomasz SzczepańskiAurélie CayeLydia SuarezHélène CavéRolf Marschalek

Abstract

Chromosomal rearrangements of the human MLL/KMT2A gene are associated with infant, pediatric, adult and therapy-induced acute leukemias. Here we present the data obtained from 2345 acute leukemia patients. Genomic breakpoints within the MLL gene and the involved translocation partner genes (TPGs) were determined and 11 novel TPGs were identified. Thus, a total of 135 different MLL rearrangements have been identified so far, of which 94 TPGs are now characterized at the molecular level. In all, 35 out of these 94 TPGs occur recurrently, but only 9 specific gene fusions account for more than 90% of all illegitimate recombinations of the MLL gene. We observed an age-dependent breakpoint shift with breakpoints localizing within MLL intron 11 associated with acute lymphoblastic leukemia and younger patients, while breakpoints in MLL intron 9 predominate in AML or older patients. The molecular characterization of MLL breakpoints suggests different etiologies in the different age groups and allows the correlation of functional domains of the MLL gene with clinical outcome. This study provides a comprehensive analysis of the MLL recombinome in acute leukemia and demonstrates that the establishment of patient-specific chromosomal fusion sites allows the design of specific PCR primers for minimal residual disease analyses for all patients.

Acute Myeloid Leukemia ResearchAcute Lymphoblastic Leukemia researchEpigenetics and DNA MethylationBreakpointChromosomal translocationBiologyFusion geneLeukemiaIntronGeneAcute leukemiaMinimal residual diseaseGene rearrangement

MeSH terms

AdultChildChromosome AberrationsFemaleHumansInfantMaleHistone-Lysine N-MethyltransferaseTranslocation, GeneticGene RearrangementLeukemia, Myeloid, AcuteOncogene Proteins, FusionChromosome BreakageMyeloid-Lymphoid Leukemia ProteinPrecursor Cell Lymphoblastic Leukemia-Lymphoma
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