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PAX3-FKHR癌蛋白的转化和生长抑制活性分析。

Analysis of the transforming and growth suppressive activities of the PAX3-FKHR oncoprotein.

作者信息

Xia Shujuan J, Barr Frederic G

机构信息

Department of Pathology and Laboratory Medicine, University of Pennsylvania School of Medicine, Philadelphia, PA 19104, USA.

出版信息

Oncogene. 2004 Sep 9;23(41):6864-71. doi: 10.1038/sj.onc.1207850.

Abstract

The 2;13 chromosomal translocation occurs in most cases of the cancer alveolar rhabdomyosarcoma (ARMS), and juxtaposes the genes encoding the PAX3 and FKHR transcription factors. The resulting chimeric protein PAX3-FKHR is a potent transcriptional activator, and is hypothesized to function as a dominant acting oncogene. To investigate its biological function, PAX3-FKHR was transduced into three immortalized murine cell lines in either a constitutive or inducible manner. These cells only tolerate expression of low PAX3-FKHR levels, which is sufficient for transformation in NIH3T3 cells. In contrast, higher PAX3-FKHR levels, which are comparable to the endogenous level expressed in ARMS cells, result in growth suppression. To determine as to which PAX3 functional domains are needed for growth suppression and transformation, inactivating mutations were introduced into the paired box and homeodomain of PAX3-FKHR. In these experiments, the homeodomain is necessary for transformation, but not growth suppression; whereas the paired box is not required for transformation but mediates growth suppression. In summary, our findings demonstrate that the transforming and growth suppressive activities of PAX3-FKHR are dominant at different activity levels and are mediated by distinct functional domains. These findings are consistent with the hypothesis that distinct expression pathways are operative in these opposing phenotypic end points.

摘要

2;13染色体易位发生在大多数肺泡横纹肌肉瘤(ARMS)病例中,它使编码PAX3和FKHR转录因子的基因并列。由此产生的嵌合蛋白PAX3 - FKHR是一种有效的转录激活因子,据推测其作为一种显性作用癌基因发挥功能。为了研究其生物学功能,将PAX3 - FKHR以组成型或诱导型方式转导到三种永生化小鼠细胞系中。这些细胞仅能耐受低水平PAX3 - FKHR的表达,而这一水平足以在NIH3T3细胞中引发转化。相反,与ARMS细胞中内源性表达水平相当的较高PAX3 - FKHR水平会导致生长抑制。为了确定生长抑制和转化需要PAX3的哪些功能结构域,在PAX3 - FKHR的配对结构域和同源结构域中引入了失活突变。在这些实验中,同源结构域对于转化是必需的,但对生长抑制不是必需的;而配对结构域对于转化不是必需的,但介导生长抑制。总之,我们的研究结果表明,PAX3 - FKHR的转化和生长抑制活性在不同活性水平上占主导地位,并且由不同的功能结构域介导。这些发现与不同表达途径在这些相反表型终点中起作用的假设一致。

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