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Daxx介导Smad4的小泛素样修饰物依赖性转录抑制。

Daxx mediates the small ubiquitin-like modifier-dependent transcriptional repression of Smad4.

作者信息

Chang Che-Chang, Lin Ding-Yen, Fang Hsin-I, Chen Ruey-Hwa, Shih Hsiu-Ming

机构信息

Graduate Institute of Life Sciences, National Defense Medical Center, Taipei, Taiwan, Republic of China.

出版信息

J Biol Chem. 2005 Mar 18;280(11):10164-73. doi: 10.1074/jbc.M409161200. Epub 2005 Jan 6.

Abstract

Daxx has been shown to function as an apoptosis regulator and transcriptional repressor via its interaction with various cytoplasmic and nuclear proteins. Here, we showed that Daxx interacts with Smad4 and represses its transcriptional activity via the C-terminal domain of Daxx. In vitro and in vivo interaction studies indicated that the binding of Smad4 to Daxx depends on Smad4 sumoylation. Substitution of Smad4 SUMO conjugation residue lysine 159, but not 113, to arginine not only disrupted Smad4-Daxx interaction but also relieved Daxx-elicited repression of Smad4 transcriptional activity. Furthermore, chromatin immunoprecipitation analyses revealed the recruitment of Daxx to an endogenous, Smad4-targeted promoter in a Lys(159) sumoylation-dependent manner. Finally, down-regulation of Daxx expression by RNA interference enhanced transforming growth factor beta-induced transcription of reporter and endogenous genes through a Smad4-dependent, but not K159R-Smad4-dependent, manner. Together, these results indicate that Daxx suppresses Smad4-mediated transcriptional activity by direct interaction with the sumoylated Smad4 and identify a novel role of Daxx in regulating transforming growth factor beta signaling.

摘要

已有研究表明,Daxx通过与多种细胞质和核蛋白相互作用,发挥凋亡调节因子和转录抑制因子的功能。在此,我们发现Daxx与Smad4相互作用,并通过Daxx的C末端结构域抑制其转录活性。体外和体内相互作用研究表明,Smad4与Daxx的结合依赖于Smad4的SUMO化修饰。将Smad4的SUMO结合残基赖氨酸159(而非113)替换为精氨酸,不仅破坏了Smad4与Daxx的相互作用,还解除了Daxx对Smad4转录活性的抑制。此外,染色质免疫沉淀分析显示,Daxx以赖氨酸(159)SUMO化修饰依赖的方式被招募至内源性Smad4靶向启动子。最后,通过RNA干扰下调Daxx表达,以Smad4依赖而非K159R - Smad4依赖的方式增强了转化生长因子β诱导的报告基因和内源性基因的转录。综上所述,这些结果表明Daxx通过与SUMO化修饰的Smad4直接相互作用抑制Smad4介导的转录活性,并确定了Daxx在调节转化生长因子β信号传导中的新作用。

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