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通过下调PAX蛋白诱导横纹肌肉瘤细胞凋亡。

Induction of apoptosis in rhabdomyosarcoma cells through down-regulation of PAX proteins.

作者信息

Bernasconi M, Remppis A, Fredericks W J, Rauscher F J, Schäfer B W

机构信息

Department of Pediatrics, University of Zürich, Switzerland.

出版信息

Proc Natl Acad Sci U S A. 1996 Nov 12;93(23):13164-9. doi: 10.1073/pnas.93.23.13164.

Abstract

The expression of a number of human paired box-containing (PAX) genes has been correlated with various types of tumors. Novel fusion genes encoding chimeric fusion proteins have been found in the pediatric malignant tumor alveolar rhabdomyosarcoma (RMS). They are generated by two chromosomal translocations t(2;13) and t(1;13) juxtaposing PAX3 or PAX7, respectively, with a forkhead domain gene FKHR. Here we describe that specific down-regulation of the t(2;13) translocation product in alveolar RMS cells by antisense oligonucleotides results in reduced cellular viability. Cells of embryonal RMS, the other major histiotype of this tumor, were found to express either wild type PAX3 or PAX7 at elevated levels when compared with primary human myoblasts. Treatment of corresponding embryonal RMS cells with antisense olignucleotides directed against the mRNA translational start site of either one of these two transcription factors similarly triggers cell death, which is most likely due to induction of apoptosis. Retroviral mediated ectopic expression of mouse Pax3 in a PAX7 expressing embryonal RMS cell line could partially rescue antisense induced apoptosis. These data suggest that the PAX3/FKHR fusion gene and wild-type PAX genes play a causative role in the formation of RMS and presumably other tumor types, possibly by suppressing the apoptotic program that would normally eliminate these cells.

摘要

许多含人类配对盒(PAX)基因的表达已与多种类型的肿瘤相关联。在小儿恶性肿瘤肺泡横纹肌肉瘤(RMS)中发现了编码嵌合融合蛋白的新型融合基因。它们是由两种染色体易位t(2;13)和t(1;13)分别使PAX3或PAX7与叉头结构域基因FKHR并列产生的。在此我们描述,反义寡核苷酸对肺泡RMS细胞中t(2;13)易位产物的特异性下调导致细胞活力降低。与原代人成肌细胞相比,胚胎性RMS(该肿瘤的另一种主要组织学类型)的细胞被发现高水平表达野生型PAX3或PAX7。用针对这两种转录因子之一的mRNA翻译起始位点的反义寡核苷酸处理相应的胚胎性RMS细胞同样会引发细胞死亡,这很可能是由于诱导了细胞凋亡。在表达PAX7的胚胎性RMS细胞系中通过逆转录病毒介导异位表达小鼠Pax3可部分挽救反义诱导的细胞凋亡。这些数据表明,PAX3/FKHR融合基因和野生型PAX基因在RMS以及可能其他肿瘤类型的形成中起致病作用,可能是通过抑制通常会消除这些细胞的凋亡程序来实现的。

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