The inv(11)(p15q22) chromosome translocation of de novo and therapy-related myeloid malignancies results in fusion of the nucleoporin gene, NUP98, with the putative RNA helicase gene, DDX10.

نویسندگان

  • Y Arai
  • F Hosoda
  • H Kobayashi
  • K Arai
  • Y Hayashi
  • N Kamada
  • Y Kaneko
  • M Ohki
چکیده

The inv(11)(p15q22) is a recurrent chromosomal abnormality associated with de novo and therapy-related myeloid malignancies. Here we report the molecular definition of this chromosomal aberration in four patients. Positional cloning showed the consistent rearrangement of the DDX10 gene on chromosome 11q22, which encodes a putative RNA helicase. The translocation targets the NUP98 gene on 11p15, a member of the FG peptide repeat nucleoporin family. In DDX10 and NUP98, the inv(11) breakpoints occurred within two introns of each gene and the two genes merged in-frame to produce the chimeric transcripts characteristic of this translocation. Although two reciprocal chimeric products, NUP98-DDX10 and DDX10-NUP98, were predicted, only NUP98-DDX10 appears to be implicated in tumorigenesis. DDX10 is predicted to be involved in ribosome assembly. NUP98 has been identified as a nuclear pore complex protein and a target of chromosomal translocation in acute myeloid leukemia through the t(7;11)(p15;p15) translocation. The predicted NUP98-DDX10 fusion protein may promote leukemogenesis through aberrant nucleoplasmic transport of mRNA or alterations in ribosome assembly.

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منابع مشابه

RAPID COMMUNICATION The inv(11)(p15q22) Chromosome Translocation of De Novo and Therapy- Related Myeloid Malignancies Results in Fusion of the Nucleoporin Gene, NUP98, With the Putative RNA Helicase Gene, DDX10

The inv(11)(p15q22) is a recurrent chromosomal abnormality location. Although two reciprocal chimeric products, NUP98DDX10 and DDX10-NUP98, were predicted, only NUP98associated with de novo and therapy-related myeloid malignancies. Here we report the molecular definition of this chroDDX10 appears to be implicated in tumorigenesis. DDX10 is predicted to be involved in ribosome assembly. NUP98 ha...

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The First Korean Case of Childhood Acute Myeloid Leukemia with Inv(11)(p15q22)/NUP98-DDX10 Rearrangement: A Rare but Recurrent Genetic Abnormality

Inv(11)(p15q22)/NUP98-DDX10 rearrangement is a rare but recurrent chromosomal translocation associated with myeloid malignancies. Structural chromosomal rearrangements of the nucleoporin 98 gene (NUP98) at 11p15.4 produce NUP98 fusions with the DDX10 DEAD (Asp-Glu-Ala-Asp) box polypeptide 10 (DDX10) gene on chromosome 11q22 [1]. To date, only 15 such cases, except the present case, with de novo...

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NUP98 is fused to PMX1 homeobox gene in human acute myelogenous leukemia with chromosome translocation t(1;11)(q23;p15).

The nucleoporin gene NUP98 was found fused to the HOXA9, HOXD13, or DDX10 genes in human acute myelogenous leukemia (AML) with chromosome translocations t(7;11)(p15;p15), t(2;11)(q35;p15), or inv(11)(p15;q22), respectively. We report here the fusion between the NUP98 gene and another homeobox gene PMX1 in a case of human AML with a t(1;11)(q23;p15) translocation. The chimeric NUP98-PMX1 transcr...

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The t(11;20)(p15;q11) chromosomal translocation associated with therapy-related myelodysplastic syndrome results in an NUP98-TOP1 fusion.

The NUP98 gene is involved in 3 distinct chromosomal rearrangements, t(7;11)(p15;p15), t(2;11)(q31;p15), and inv(11)(p15q22); all of these NUP98 rearrangements have been identified in the malignant cells of patients with therapy-related acute myelogenous leukemia or myelodysplastic syndrome (t-AML/MDS). Here we report the cloning and characterization of a t(11;20)(p15;q11) translocation from pa...

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Screening for NUP98 rearrangements in hematopoietic malignancies by fluorescence in situ hybridization.

BACKGROUND AND OBJECTIVES The aim of this study was to determine the incidence of rearrangements of NUP98 (the gene coding for nucleoporin 98kDa protein) in childhood acute myeloid leukemia (AML) and selected patients with 11p13-15 rearrangements. This aim was achieved using a fluorescence in situ hybridization (FISH) assay that allows the detection of NUP98 aberrations independently of the par...

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عنوان ژورنال:
  • Blood

دوره 89 11  شماره 

صفحات  -

تاریخ انتشار 1997