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MdmX抑制Smad转录激活。

MdmX inhibits Smad transactivation.

作者信息

Kadakia Madhavi, Brown Thomas L, McGorry Molly M, Berberich Steven J

机构信息

Department of Biochemistry and Molecular Biology, Wright State University, Dayton, Ohio, USA.

出版信息

Oncogene. 2002 Dec 12;21(57):8776-85. doi: 10.1038/sj.onc.1205993.

Abstract

Mdm2 overexpression confers a growth promoting activity upon cells primarily by downregulating the p53 tumor suppressor protein. Nevertheless, Mdm2 deregulation has also been implicated in inhibiting TGF-beta growth repression in a p53 independent manner. Our goal in this study was to examine whether overexpression of Mdm2 or MdmX, a Mdm2-related protein, could affect Smad-induced transactivation. As downstream signaling elements of the TGF-beta pathway, Smads represent one potential target for Mdm2 and MdmX. Here we show that MdmX but not Mdm2 is capable of inhibiting Smad induced transactivation. Based on deletion mutant analysis, MdmX inhibition of Smad transactivation was independent of the p53 and Mdm2 interaction domains, yet required amino acid residues 128-444. Using TGF-beta sensitive HepG2 cells, MdmX overexpression was shown to inhibit TGF-beta induced Smad transactivation. Additionally, mouse embryo fibroblasts (MEFs) lacking p53 and MdmX showed enhanced Smad transactivation when compared to MEFs lacking either p53 or p53 and Mdm2. Interestingly, the inhibition of Smad transactivation by MdmX could be reversed by p300, a functional co-activator of Smads and a necessary factor for Mdm2 nuclear export and did not result from altered Smad localization. In vitro studies demonstrate that MdmX binds to p300 as well as Smad3 and Smad4. Taken together, these results suggest that inhibition of Smad-induced transactivation by MdmX occurs by altering Smad interaction with its coactivator p300.

摘要

Mdm2的过表达主要通过下调p53肿瘤抑制蛋白赋予细胞生长促进活性。然而,Mdm2失调也与以p53非依赖方式抑制TGF-β生长抑制有关。我们在本研究中的目标是检测Mdm2或MdmX(一种与Mdm2相关的蛋白质)的过表达是否会影响Smad诱导的反式激活。作为TGF-β信号通路的下游信号元件,Smads是Mdm2和MdmX的一个潜在靶点。在此我们表明,MdmX而非Mdm2能够抑制Smad诱导的反式激活。基于缺失突变体分析,MdmX对Smad反式激活的抑制独立于p53和Mdm2相互作用结构域,但需要128 - 444位氨基酸残基。使用对TGF-β敏感的HepG2细胞,显示MdmX过表达可抑制TGF-β诱导的Smad反式激活。此外,与缺乏p53或同时缺乏p53和Mdm2的小鼠胚胎成纤维细胞(MEF)相比,缺乏p53和MdmX的MEF显示出增强的Smad反式激活。有趣的是,MdmX对Smad反式激活的抑制可被p300逆转,p300是Smads的功能性共激活因子以及Mdm2核输出的必要因子,且并非由Smad定位改变所致。体外研究表明,MdmX与p300以及Smad3和Smad4结合。综上所述,这些结果表明MdmX对Smad诱导的反式激活的抑制是通过改变Smad与其共激活因子p300的相互作用而发生的。

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