Title of article
H2AX Haploinsufficiency Modifies Genomic Stability and Tumor Susceptibility
Author/Authors
Arkady Celeste، نويسنده , , Simone Difilippantonio، نويسنده , , Michael J. Difilippantonio، نويسنده , , Oscar Fernandez-Capetillo، نويسنده , , Duane R. Pilch، نويسنده , , Olga A. Sedelnikova، نويسنده , , Michael Eckhaus، نويسنده , , Thomas Ried، نويسنده , , William M. Bonner، نويسنده , , Andre Nussenzweig، نويسنده ,
Issue Information
هفته نامه با شماره پیاپی سال 2003
Pages
13
From page
371
To page
383
Abstract
Histone H2AX becomes phosphorylated in chromatin domains flanking sites of DNA double-strand breakage associated with γ-irradiation, meiotic recombination, DNA replication, and antigen receptor rearrangements. Here, we show that loss of a single H2AX allele compromises genomic integrity and enhances the susceptibility to cancer in the absence of p53. In comparison with heterozygotes, tumors arise earlier in the H2AX homozygous null background, and H2AX−/− p53−/− lymphomas harbor an increased frequency of clonal nonreciprocal translocations and amplifications. These include complex rearrangements that juxtapose the c-myc oncogene to antigen receptor loci. Restoration of the H2AX null allele with wild-type H2AX restores genomic stability and radiation resistance, but this effect is abolished by substitution of the conserved serine phosphorylation sites in H2AX with alanine or glutamic acid residues. Our results establish H2AX as genomic caretaker that requires the function of both gene alleles for optimal protection against tumorigenesis.
Journal title
CELL
Serial Year
2003
Journal title
CELL
Record number
1018321
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