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Foxp1/2/4家族的转录和DNA结合活性受异型和同型蛋白质相互作用的调节。

Transcriptional and DNA binding activity of the Foxp1/2/4 family is modulated by heterotypic and homotypic protein interactions.

作者信息

Li Shanru, Weidenfeld Joel, Morrisey Edward E

机构信息

Department of Medicine, Molecular Cardiology Research Center, University of Pennsylvania, 421 Curie Boulevard, Philadelphia, PA 19104, USA.

出版信息

Mol Cell Biol. 2004 Jan;24(2):809-22. doi: 10.1128/MCB.24.2.809-822.2004.

Abstract

Foxp1, Foxp2, and Foxp4 are large multidomain transcriptional regulators belonging to the family of winged-helix DNA binding proteins known as the Fox family. Foxp1 and Foxp2 have been shown to act as transcriptional repressors, while regulatory activity of the recently identified Foxp4 has not been determined. Given the importance of this Fox gene subfamily in neural and lung development, we sought to elucidate the mechanisms by which Foxp1, Foxp2, and Foxp4 repress gene transcription. We show that like Foxp1 and Foxp2, Foxp4 represses transcription. Analysis of the N-terminal repression domain in Foxp1, Foxp2, and Foxp4 shows that this region contains two separate and distinct repression subdomains that are highly homologous termed subdomain 1 and subdomain 2. However, subdomain 2 is not functional in Foxp4. Screening for proteins that interact with subdomains 1 and 2 of Foxp2 using yeast two-hybrid analysis revealed that subdomain 2 binds to C-terminal binding protein 1, which can synergistically repress transcription with Foxp1 and Foxp2, but not Foxp4. Subdomain 1 contains a highly conserved leucine zipper similar to that found in N-myc and confers homo- and heterodimerization to the Foxp1/2/4 family members. These interactions are dependent on the conserved leucine zipper motif. Finally, we show that the integrity of this subdomain is essential for DNA binding, making Foxp1, Foxp2, and Foxp4 the first Fox proteins that require dimerization for DNA binding. These data reveal a complex regulatory mechanism underlying Foxp1, Foxp2, and Foxp4 activity, demonstrating that Foxp1, Foxp2, and Foxp4 are the first Fox proteins reported whose activity is regulated by homo- and heterodimerization.

摘要

Foxp1、Foxp2和Foxp4是大型多结构域转录调节因子,属于翼状螺旋DNA结合蛋白家族,即Fox家族。已证明Foxp1和Foxp2作为转录抑制因子发挥作用,而最近发现的Foxp4的调节活性尚未确定。鉴于这个Fox基因亚家族在神经和肺部发育中的重要性,我们试图阐明Foxp1、Foxp2和Foxp4抑制基因转录的机制。我们发现,与Foxp1和Foxp2一样,Foxp4也能抑制转录。对Foxp1、Foxp2和Foxp4的N端抑制结构域分析表明,该区域包含两个单独且不同的抑制亚结构域,它们高度同源,分别称为亚结构域1和亚结构域2。然而,亚结构域2在Foxp4中无功能。利用酵母双杂交分析筛选与Foxp2的亚结构域1和亚结构域2相互作用的蛋白质,结果显示亚结构域2与C端结合蛋白1结合,后者可与Foxp1和Foxp2协同抑制转录,但不能与Foxp4协同抑制转录。亚结构域1包含一个与N - myc中发现的类似的高度保守的亮氨酸拉链,赋予Foxp1/2/4家族成员同源和异源二聚化能力。这些相互作用依赖于保守的亮氨酸拉链基序。最后,我们表明该亚结构域的完整性对于DNA结合至关重要,这使得Foxp1、Foxp2和Foxp4成为首批需要二聚化才能结合DNA的Fox蛋白。这些数据揭示了Foxp1、Foxp2和Foxp4活性背后复杂的调节机制,表明Foxp1、Foxp2和Foxp4是首批报道的其活性受同源和异源二聚化调节的Fox蛋白。

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