Literature DB >> 12619163

Analysis of t(9;11) chromosomal breakpoint sequences in childhood acute leukemia: almost identical MLL breakpoints in therapy-related AML after treatment without etoposides.

Thorsten Langer1, Markus Metzler, Dirk Reinhardt, Susanne Viehmann, Arndt Borkhardt, Martin Reichel, Martin Stanulla, Martin Schrappe, Ursula Creutzig, Jörg Ritter, Thomas Leis, Ulla Jacobs, Jochen Harbott, Jörn D Beck, Wolfgang Rascher, Reinald Repp.   

Abstract

The translocation t(9;11)(p22;q23) is a recurring chromosomal abnormality in acute myeloid leukemia (AML) fusing two genes designated as MLL and AF9. Within MLL, almost all rearrangements cluster in an 8.3-kb restricted region and fuse 5' portions of MLL to a variety of heterologous genes in various 11q23 translocations. AF9 is one of the most common fusion partners of MLL. It spans more than 100 kb, and two breakpoint cluster regions (BCRs) have been identified in a telomeric region of intron 4 (BCR1) and within introns 7 and 8 (BCR2). We investigated 11 children's bone marrow or peripheral blood samples (3 AML, 5 t-AML, 2 ALL, 1 ALL relapse) and two cell lines (THP-1 and Mono-Mac-6) with cytogenetically diagnosed translocations t(9;11). By use of an optimized multiplex nested long-range PCR assay, a breakpoint-spanning DNA fragment from each sample was amplified and directly sequenced. In four patients and two cell lines, the AF9 breakpoints were located within BCR1 and in two patients within BCR2, respectively. However, in five patients the AF9 breakpoints were found outside the previously described BCRs within the centromeric region of intron 4 and even within intron 3 in one case. All five patients with a secondary AML, who had not received etoposides during treatment of the primary malignant disease, revealed almost identical MLL breakpoints very close to a breakage hot spot inducible by topoisomerase II inhibitors or apoptotic triggers in vitro. Sequence patterns around the breakpoints indicated involvement of a "damage-repair mechanism" in the development of t(9;11) similar to t(4;11) in infants' acute leukemia. Copyright 2003 Wiley-Liss, Inc.

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Year:  2003        PMID: 12619163     DOI: 10.1002/gcc.10167

Source DB:  PubMed          Journal:  Genes Chromosomes Cancer        ISSN: 1045-2257            Impact factor:   5.006


  25 in total

1.  MLL leukemia induction by genome editing of human CD34+ hematopoietic cells.

Authors:  Corina Buechele; Erin H Breese; Dominik Schneidawind; Chiou-Hong Lin; Johan Jeong; Jesus Duque-Afonso; Stephen H K Wong; Kevin S Smith; Robert S Negrin; Matthew Porteus; Michael L Cleary
Journal:  Blood       Date:  2015-08-26       Impact factor: 22.113

Review 2.  Chromosomal translocations involving the MLL gene: molecular mechanisms.

Authors:  Peter D Aplan
Journal:  DNA Repair (Amst)       Date:  2006-06-21

3.  Multipotent hematopoietic cells susceptible to alternative double-strand break repair pathways that promote genome rearrangements.

Authors:  Richard Francis; Christine Richardson
Journal:  Genes Dev       Date:  2007-05-01       Impact factor: 11.361

Review 4.  Causes of oncogenic chromosomal translocation.

Authors:  Peter D Aplan
Journal:  Trends Genet       Date:  2005-10-28       Impact factor: 11.639

5.  Common chromatin structures at breakpoint cluster regions may lead to chromosomal translocations found in chronic and acute leukemias.

Authors:  Reiner Strick; Yanming Zhang; Neelmini Emmanuel; Pamela L Strissel
Journal:  Hum Genet       Date:  2006-03-30       Impact factor: 4.132

6.  Nucleotide-resolution mapping of topoisomerase-mediated and apoptotic DNA strand scissions at or near an MLL translocation hotspot.

Authors:  Marc-Edouard Mirault; Patrick Boucher; Alain Tremblay
Journal:  Am J Hum Genet       Date:  2006-09-12       Impact factor: 11.025

7.  Identification of MLL partner genes in 27 patients with acute leukemia from a single cytogenetic laboratory.

Authors:  Etienne De Braekeleer; Claus Meyer; Nathalie Douet-Guilbert; Audrey Basinko; Marie-Josée Le Bris; Frédéric Morel; Christian Berthou; Rolf Marschalek; Claude Férec; Marc De Braekeleer
Journal:  Mol Oncol       Date:  2011-08-26       Impact factor: 6.603

8.  Rapid high-resolution mapping of balanced chromosomal rearrangements on tiling CGH arrays.

Authors:  Harvey A Greisman; Noah G Hoffman; Hye Son Yi
Journal:  J Mol Diagn       Date:  2011-09-09       Impact factor: 5.568

Review 9.  The role of the MLL gene in infant leukemia.

Authors:  Mariko Eguchi; Minenori Eguchi-Ishimae; Mel Greaves
Journal:  Int J Hematol       Date:  2003-12       Impact factor: 2.490

10.  High-resolution analysis of aberrant regions in autosomal chromosomes in human leukemia THP-1 cell line.

Authors:  Naoki Adati; Ming-Chih Huang; Takahiro Suzuki; Harukazu Suzuki; Toshio Kojima
Journal:  BMC Res Notes       Date:  2009-07-27
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