| Literature DB >> 14633590 |
Emi Ito1, Reiko Honma, Jun-ichi Imai, Sakura Azuma, Takayuki Kanno, Shigeo Mori, Osamu Yoshie, Jun Nishio, Hiroshi Iwasaki, Koichi Yoshida, Jin Gohda, Jun-Ichiro Inoue, Shinya Watanabe, Kentaro Semba.
Abstract
Recurrent chromosomal translocations in neoplasms often generate hybrid genes that play critical roles in tumorigenesis. Desmoplastic small round-cell tumor (DSRCT) is an aggressive malignancy associated with the chromosomal translocation t(11;22)(p13;q12). This translocation generates a chimeric transcription factor, EWS-WT1, which consists of the transcriptional activation domain of the Ewing's sarcoma (EWS) protein and the DNA binding domain of the Wilms' tumor 1 (WT1) protein. One of the splice variants, EWS-WT1(-KTS) lacks three amino acid residues (Lys-Thr-Ser) in the DNA binding domain and transforms NIH3T3 cells. Therefore, it is likely that aberrant gene expression caused by EWS-WT1(-KTS) is involved in the malignant phenotype of DSRCT. Microarray analysis of 9600 human genes revealed that a gene encoding a tetraspanin-family protein, T-cell acute lymphoblastic leukemia-associated antigen 1 (TALLA-1), was induced in EWS-WT1(-KTS)-expressing cell clones. This induction was EWS-WT1(-KTS)-specific, and more importantly, TALLA-1 protein was expressed in the three independent cases of DSRCT. Tetraspanin-family genes encode transmembrane proteins that regulate various cell processes such as cell adhesion, migration and metastasis. Our findings provide a novel insight into the malignant phenotype of DSRCT, suggesting that TALLA-1 is a useful marker for diagnosis and a potential target for the therapy of DSRCT.Entities:
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Year: 2003 PMID: 14633590 PMCID: PMC1892365 DOI: 10.1016/s0002-9440(10)63573-0
Source DB: PubMed Journal: Am J Pathol ISSN: 0002-9440 Impact factor: 4.307