Endonuclease G initiates DNA rearrangements at the MLL breakpoint cluster upon replication stress.
B Gole, C Baumann, E Mian, C I Ireno, L Wiesmüller
Index: Oncogene 34 , 3391-401, (2015)
Full Text: HTML
Abstract
MLL (myeloid/lymphoid or mixed-lineage leukemia) rearrangements are frequent in therapy-related and childhood acute leukemia, and are associated with poor prognosis. The majority of the rearrangements fall within a 7.3-kb MLL breakpoint cluster region (MLLbcr), particularly in a 0.4-kb hotspot at the intron11-exon12 boundary. The underlying mechanisms are poorly understood, though multiple pathways including early apoptotic signaling, accompanied by high-order DNA fragmentation, have been implicated. We introduced the MLLbcr hotspot in an EGFP-based recombination reporter system and demonstrated enhancement of both spontaneous and genotoxic treatment-induced DNA recombination by the MLLbcr in various human cell types. We identified Endonuclease G (EndoG), an apoptotic nuclease, as an essential factor for MLLbcr-specific DNA recombination after induction of replication stress. We provide evidence for replication stress-induced nuclear accumulation of EndoG, DNA binding by EndoG as well as cleavage of the chromosomal MLLbcr locus in a manner requiring EndoG. We demonstrate additional dependency of MLLbcr breakage on ATM signaling to histone H2B monoubiquitinase RNF20, involved in chromatin relaxation. Altogether our findings provide a novel mechanism underlying MLLbcr destabilization in the cells of origin of leukemogenesis, with replication stress-activated, EndoG-mediated cleavage at the MLLbcr, which may serve resolution of the stalled forks via recombination repair, however, also permits MLL rearrangements.
Related Compounds
Related Articles:
TAp73 promotes cell survival upon genotoxic stress by inhibiting p53 activity.
2014-09-30
[Oncotarget 5(18) , 8107-22, (2014)]
DNA damage-specific deubiquitination regulates Rad18 functions to suppress mutagenesis.
2014-07-21
[J. Cell Biol. 206(2) , 183-97, (2014)]
SK053 triggers tumor cells apoptosis by oxidative stress-mediated endoplasmic reticulum stress.
2015-02-15
[Biochem. Pharmacol. 93(4) , 418-27, (2015)]
2014-12-01
[Mol. Cell Biochem. 397(1-2) , 33-43, (2014)]
High-throughput screening identifies inhibitors of DUX4-induced myoblast toxicity.
2014-01-01
[Skelet. Muscle 4 , 4, (2014)]