首页> 美国卫生研究院文献>PLoS Clinical Trials >The Structure of an LIM-Only Protein 4 (LMO4) and Deformed Epidermal Autoregulatory Factor-1 (DEAF1) Complex Reveals a Common Mode of Binding to LMO4
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The Structure of an LIM-Only Protein 4 (LMO4) and Deformed Epidermal Autoregulatory Factor-1 (DEAF1) Complex Reveals a Common Mode of Binding to LMO4

机译:仅LIM蛋白4(LMO4)和变形的表皮自调节因子1(DEAF1)复合物的结构揭示了结合LMO4的常见模式。

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摘要

LIM-domain only protein 4 (LMO4) is a widely expressed protein with important roles in embryonic development and breast cancer. It has been reported to bind many partners, including the transcription factor Deformed epidermal autoregulatory factor-1 (DEAF1), with which LMO4 shares many biological parallels. We used yeast two-hybrid assays to show that DEAF1 binds both LIM domains of LMO4 and that DEAF1 binds the same face on LMO4 as two other LMO4-binding partners, namely LIM domain binding protein 1 (LDB1) and C-terminal binding protein interacting protein (CtIP/RBBP8). Mutagenic screening analysed by the same method, indicates that the key residues in the interaction lie in LMO4LIM2 and the N-terminal half of the LMO4-binding domain in DEAF1. We generated a stable LMO4LIM2-DEAF1 complex and determined the solution structure of that complex. Although the LMO4-binding domain from DEAF1 is intrinsically disordered, it becomes structured on binding. The structure confirms that LDB1, CtIP and DEAF1 all bind to the same face on LMO4. LMO4 appears to form a hub in protein-protein interaction networks, linking numerous pathways within cells. Competitive binding for LMO4 therefore most likely provides a level of regulation between those different pathways.
机译:LIM仅域蛋白4(LMO4)是一种广泛表达的蛋白,在胚胎发育和乳腺癌中具有重要作用。据报道它可以结合许多伴侣,包括转录因子变形表皮自调节因子-1(DEAF1),LMO4与它具有许多生物学上的相似之处。我们使用酵母双杂交测定法显示,DEAF1结合LMO4的两个LIM结构域,并且DEAF1结合两个其他LMO4结合伴侣,即LIM结构域结合蛋白1(LDB1)和C末端结合蛋白相互作用,在LMO4上结合相同的面孔蛋白(CtIP / RBBP8)。通过相同方法进行的诱变筛选表明,相互作用中的关键残基位于LMO4LIM2和DEAF1中LMO4结合域的N端一半。我们生成了稳定的LMO4LIM2-DEAF1复合物,并确定了该复合物的溶液结构。尽管来自DEAF1的LMO4结合域在本质上是无序的,但它在结合时变得结构化。该结构确认LDB1,CtIP和DEAF1都绑定到LMO4的同一面上。 LMO4似乎在蛋白质-蛋白质相互作用网络中形成枢纽,连接细胞内的许多途径。因此,与LMO4的竞争性结合极有可能在这些不同途径之间提供一定水平的调节。

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