Heterogeneous fusion transcripts involving the NUP98 gene and HOXD13 gene activation in a case of acute myeloid leukemia with the t(2;11)(q31;p15) translocation

被引:0
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作者
Y Arai
T Kyo
H Miwa
K Arai
N Kamada
K Kita
M Ohki
机构
[1] National Cancer Center Research Institute,Cancer Genomics Division
[2] Hiroshima Red Cross Hospital,Fourth Department of Internal Medicine
[3] Aichi Medical University,Second Department of Internal Medicine
[4] Research Institute for Radiation Biology and Medicine,Department of Cancer Cytogenetics
[5] Hiroshima University,Second Department of Internal Medicine
[6] Mie University,undefined
来源
Leukemia | 2000年 / 14卷
关键词
t(2; 11)(q31; p15); fusion gene;
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学科分类号
摘要
We report the characterization of a rare chromosomal translocation, a t(2;11)(q31;p15), which occurred in a patient with de novo acute myeloid leukemia (AML-M4). By 3′-RACE and RT-PCR analyses, two kinds of NUP98-HOXD13 fusion transcript were detected. In addition, we identified a novel fusion transcript, NUP98-FN1, in the same patient. Ectopic expression of the wild-type HOXD13 gene was also observed in the patient, suggesting that HOXD13 contributes to the development of this type of leukemia. The NUP98-HOXD13 fusion transcript was predicted to encode a 552 or 569-amino acid protein containing the Phe-Gly (FG) repeat region of NUP98 and the homeodomain of HOXD13. The NUP98-FN1 fusion transcript was predicted to encode a 482 or 499-amino acid protein consisting of the same N-terminal region of NUP98 and a C-terminal region of 12 amino acids derived from a previously unidentified sequence. We isolated and characterized the chromosomal breakpoints. The breakpoint at 11p15 is mapped within a LINE repetitive element in a 9 kb intron of NUP98, and more than 60% of the sequenced 3 kb region surrounding the breakpoint junction consists of repetitive elements. The other breakpoint at 2q31 is in an intron of FN1, which is located 7 kb upstream of HOXD13, and the repetitive sequence content of the breakpoint junction is low. Local sequence duplications at genomic breakpoints suggest that the t(2;11) translocation is mediated through staggered double-strand DNA breaks. These results throw light on the mechanisms responsible for the generation of t(2;11) translocation and on the processes leading to t(2;11) leukemia. Leukemia (2000) 14, 1621–1629.
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页码:1621 / 1629
页数:8
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