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Ebp1转录和翻译作用的结构见解

Structural insights into the transcriptional and translational roles of Ebp1.

作者信息

Monie Tom P, Perrin Andrew J, Birtley James R, Sweeney Trevor R, Karakasiliotis Ioannis, Chaudhry Yasmin, Roberts Lisa O, Matthews Stephen, Goodfellow Ian G, Curry Stephen

机构信息

Division of Cell and Molecular Biology, Imperial College, South Kensington Campus, London, UK.

出版信息

EMBO J. 2007 Sep 5;26(17):3936-44. doi: 10.1038/sj.emboj.7601817. Epub 2007 Aug 9.

Abstract

The ErbB3-binding protein 1 (Ebp1) is an important regulator of transcription, affecting eukaryotic cell growth, proliferation, differentiation and survival. Ebp1 can also affect translation and cooperates with the polypyrimidine tract-binding protein (PTB) to stimulate the activity of the internal ribosome entry site (IRES) of foot-and-mouth disease virus (FMDV). We report here the crystal structure of murine Ebp1 (p48 isoform), providing the first glimpse of the architecture of this versatile regulator. The structure reveals a core domain that is homologous to methionine aminopeptidases, coupled to a C-terminal extension that contains important motifs for binding proteins and RNA. It sheds new light on the conformational differences between the p42 and p48 isoforms of Ebp1, the disposition of the key protein-interacting motif ((354)LKALL(358)) and the RNA-binding activity of Ebp1. We show that the primary RNA-binding site is formed by a Lys-rich motif in the C terminus and mediates the interaction with the FMDV IRES. We also demonstrate a specific functional requirement for Ebp1 in FMDV IRES-directed translation that is independent of a direct interaction with PTB.

摘要

埃布B3结合蛋白1(Ebp1)是转录的重要调节因子,影响真核细胞的生长、增殖、分化和存活。Ebp1还可影响翻译,并与多嘧啶序列结合蛋白(PTB)协同作用,刺激口蹄疫病毒(FMDV)内部核糖体进入位点(IRES)的活性。我们在此报告小鼠Ebp1(p48亚型)的晶体结构,首次揭示了这种多功能调节因子的结构。该结构揭示了一个与甲硫氨酸氨基肽酶同源的核心结构域,与一个C末端延伸结构相连,该延伸结构包含与蛋白质和RNA结合的重要基序。它为Ebp1的p42和p48亚型之间的构象差异、关键蛋白质相互作用基序((354)LKALL(358))的排列以及Ebp1的RNA结合活性提供了新的线索。我们表明,主要的RNA结合位点由C末端富含赖氨酸的基序形成,并介导与FMDV IRES的相互作用。我们还证明了Ebp1在FMDV IRES指导的翻译中具有特定的功能需求,这与它与PTB的直接相互作用无关。

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