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APPL(PH) 与 BAR 结构域的相互排斥结合和 Reptin 调节 β-连环蛋白依赖性转录事件。

Mutually exclusive binding of APPL(PH) to BAR domain and Reptin regulates β-catenin dependent transcriptional events.

机构信息

National Center for Bioinformatics, Quaid-i-Azam University, Islamabad, Pakistan.

出版信息

Comput Biol Chem. 2013 Dec;47:48-55. doi: 10.1016/j.compbiolchem.2013.05.005. Epub 2013 Jun 20.

Abstract

Reptin functions in a wide range of biological processes including chromatin remodelling, nucleolar organization and transcriptional regulation of WNT signalling. As β-catenin dependent transcriptional repression and activation events involve binding of Reptin and histone deacetylase 1 to APPL endocytic proteins, this complex has become an important target to identify molecules governing endocytic processes and WNT signalling. Here, we describe the structural basis of APPL binding to Reptin to explore their mode of binding in context with APPL1/APPL2 dimerization. There is an evidence that both PH and BAR domains of APPL proteins exhibit alternately conserved regions involved in hetero-dimerization process and our in-silico data also corroborate this fact. Moreover, APPL2(PH) domain binds to the BAR domain region encompassing a nuclear localization signal. We conclude that APPL(PH) binding to BAR domain and Reptin is mutually exclusive which regulates the nucleocytoplasmic shuttling of Reptin. Furthermore, Reptin is unable to bind with membrane-associated APPL proteins. These observations were further expanded by experimental approaches where we identified a novel point mutation D316N lying in the APPL1(PH) domain which resulted in a significantly reduced binding with Reptin. By luciferase assays, we observed that overexpression of APPL1(D316N) and APPL1(WT) stimulated β-catenin/TCF dependent transcriptional activity in a similar manner which suggested that binding of Reptin to APPL1 is not necessary for β-catenin dependent target gene expression. Overall, our data attempt to highlight a comparative role of APPL proteins in controlling β-catenin dependent transcription mechanism which may improve our understanding of gene regulation.

摘要

Reptin 在广泛的生物学过程中发挥作用,包括染色质重塑、核仁组织和 WNT 信号的转录调节。由于 β-连环蛋白依赖性转录抑制和激活事件涉及 Reptin 和组蛋白去乙酰化酶 1 与 APPL 内吞蛋白的结合,该复合物已成为鉴定控制内吞过程和 WNT 信号的分子的重要靶标。在这里,我们描述了 APPL 与 Reptin 结合的结构基础,以探讨它们在 APPL1/APPL2 二聚化背景下的结合模式。有证据表明,APPL 蛋白的 PH 和 BAR 结构域都表现出涉及异二聚化过程的交替保守区域,我们的计算机数据也证实了这一事实。此外,APPL2(PH)结构域结合到包含核定位信号的 BAR 结构域区域。我们得出结论,APPL(PH)与 BAR 结构域和 Reptin 的结合是相互排斥的,这调节了 Reptin 的核质穿梭。此外,Reptin 无法与膜相关的 APPL 蛋白结合。这些观察结果通过实验方法进一步扩展,我们在 APPL1(PH)结构域中鉴定出一个新的点突变 D316N,该突变导致与 Reptin 的结合显著减少。通过荧光素酶测定,我们观察到 APPL1(D316N)和 APPL1(WT)的过表达以相似的方式刺激 β-连环蛋白/TCF 依赖性转录活性,这表明 Reptin 与 APPL1 的结合对于 β-连环蛋白依赖性靶基因表达不是必需的。总的来说,我们的数据试图强调 APPL 蛋白在控制 β-连环蛋白依赖性转录机制方面的比较作用,这可能有助于我们更好地理解基因调控。

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