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The crystal structure of the Split End protein SHARP adds a new layer of complexity to proteins containing RNA recognition motifs

机译:分叉末端蛋白SHARP的晶体结构为包含RNA识别基序的蛋白质增加了一层新的复杂性

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摘要

The Split Ends (SPEN) protein was originally discovered in Drosophila in the late 1990s. Since then, homologous proteins have been identified in eukaryotic species ranging from plants to humans. Every family member contains three predicted RNA recognition motifs (RRMs) in the N-terminal region of the protein. We have determined the crystal structure of the region of the human SPEN homolog that contains these RRMs—the SMRT/HDAC1 Associated Repressor Protein (SHARP), at 2.0 Å resolution. SHARP is a co-regulator of the nuclear receptors. We demonstrate that two of the three RRMs, namely RRM3 and RRM4, interact via a highly conserved interface. Furthermore, we show that the RRM3–RRM4 block is the main platform mediating the stable association with the H12–H13 substructure found in the steroid receptor RNA activator (SRA), a long, non-coding RNA previously shown to play a crucial role in nuclear receptor transcriptional regulation. We determine that SHARP association with SRA relies on both single- and double-stranded RNA sequences. The crystal structure of the SHARP–RRM fragment, together with the associated RNA-binding studies, extend the repertoire of nucleic acid binding properties of RRM domains suggesting a new hypothesis for a better understanding of SPEN protein functions.
机译:分叉末端(SPEN)蛋白最初于1990年代后期在果蝇中发现。从那时起,已经在从植物到人类的真核物种中鉴定出同源蛋白。每个家族成员在蛋白质的N端区域都包含三个预测的RNA识别基序(RRM)。我们已经确定了包含这些RRM(即SMRT / HDAC1相关阻遏蛋白(SHARP))的人类SPEN同源物区域的晶体结构,分辨率为2.0Å。 SHARP是核受体的共同调节剂。我们证明了三个RRM中的两个,即RRM3和RRM4,是通过高度保守的界面进行交互的。此外,我们显示RRM3-RRM4阻滞是介导与类固醇受体RNA激活剂(SRA)中发现的H12-H13亚结构稳定结合的主要平台,这是一种长期的,非编码RNA,以前显示在核受体转录调控。我们确定与SRA的SHARP关联依赖于单链和双链RNA序列。 SHARP–RRM片段的晶体结构以及相关的RNA结合研究扩展了RRM结构域的核酸结合特性,为更好地理解SPEN蛋白功能提供了新的假设。

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