首页   按字顺浏览 期刊浏览 卷期浏览 The Emerging Molecular Genetics of Sarcoma Translocations
The Emerging Molecular Genetics of Sarcoma Translocations

 

作者: Marc Ladanyi,  

 

期刊: Diagnostic Molecular Pathology  (OVID Available online 1995)
卷期: Volume 4, issue 3  

页码: 162-173

 

ISSN:1052-9551

 

年代: 1995

 

出版商: OVID

 

关键词: Sarcoma;Chromosomal translocation;Gene rearrangement;Transcription factor;RNA-binding protein;EWS;FLI1;WT1;Ewing's sarcoma;Liposarcoma;Rhabdomyosarcoma;Synovial sarcoma;Reverse transcriptase polymerase chain reaction;Molecular diagnosis.

 

数据来源: OVID

 

摘要:

Many types of sarcomas are characterized by specific chromosomal translocations which are likely to be of etiologic significance. The recent elucidation of the molecular structure of the several of these translocations has revealed some striking similarities. Nearly all appear to result in the production of novel, tumor-specific chimeric transcription factors. Furthermore, six of the translocations, namely the t(11;22), t(21;22), and t(7;22) of Ewing's sarcoma, the t(12:22) of clear cell sarcoma, the t(12; 16) of myxoid liposarcoma, and the t(11:22) of desmoplastic small round cell tumor, achieve this following a peculiar pattern, consisting in the fusion of a gene with an RNA-binding domain (EWSorTLS) with a transcription factor gene (FLII, ERG, ETV1, ATF-1, CHOP, orWT1). The observation that the different translocation partners of theEWSgene are specifically associated with several distinct types of primitive sarcomas suggests a model in which the translocation partner supplying the DNA-binding domain confers the target specificity of the transcriptional activation mediated by these chimeric proteins, whereas the partner supplying the N-terminal domain and promoter region determines their transactivation potential and expression level. Further analysis of the normal functions and expression patterns of these genes should yield insights into the histogenesis of these different tumor types and into normal tissue development and differentiation. Clinically, our new understanding of the molecular structure of these translocations opens new avenues for molecular diagnosis and investigative therapeutics.

 

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