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The solution structure of REF2-I reveals interdomain interactions and regions involved in binding mRNA export factors and RNA

机译:REF2-I的溶液结构揭示了域间相互作用和参与结合mRNA输出因子和RNA的区域

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摘要

The RNA binding and export factor (REF) family of mRNA export adaptors are found in several nuclear protein complexes including the spliceosome, TREX, and exon junction complexes. They bind RNA, interact with the helicase UAP56/DDX39, and are thought to bridge the interaction between the export factor TAP/NXF1 and mRNA. REF2-I consists of three domains, with the RNA recognition motif (RRM) domain positioned in the middle. Here we dissect the interdomain interactions of REF2-I and present the solution structure of a functionally competent double domain (NM; residues 1–155). The N-terminal domain comprises a transient helix (N-helix) linked to the RRM by a flexible arm that includes an Arg-rich region. The N-helix, which is required for REF2-I function in vivo, overlaps the highly conserved REF-N motif and, together with the adjacent Arg-rich region, interacts transiently with the RRM. RNA interacts with REF2-I through arginine-rich regions in its N- and C-terminal domains, but we show that it also interacts weakly with the RRM. The mode of interaction is unusual for an RRM since it involves loops L1 and L5. NMR signal mapping and biochemical analysis with NM indicate that DDX39 and TAP interact with both the N and RRM domains of REF2-I and show that binding of these proteins and RNA will favor an open conformation for the two domains. The proximity of the RNA, TAP, and DDX39 binding sites on REF2-I suggests their binding may be mutually exclusive, which would lead to successive ligand binding events in the course of mRNA export.
机译:mRNA输出衔接子的RNA结合和输出因子(REF)家族存在于几种核蛋白复合物中,包括剪接体,TREX和外显子连接复合物。它们结合RNA,与解旋酶UAP56 / DDX39相互作用,并被认为可以桥接输出因子TAP / NXF1与mRNA之间的相互作用。 REF2-I由三个域组成,RNA识别基序(RRM)域位于中间。在这里,我们剖析了REF2-I的域间相互作用,并提出了具有功能功能的双域(NM;残基1–155)的溶液结构。 N末端结构域包含通过包括富含Arg的区域的柔性臂与RRM连接的瞬时螺旋(N-螺旋)。 REF2-I在体内起作用所需的N螺旋与高度保守的REF-N基序重叠,并且与相邻的富含Arg的区域一起与RRM瞬时相互作用。 RNA通过其N和C端结构域中的精氨酸富集区与REF2-I相互作用,但我们证明它也与RRM相互作用较弱。对于RRM而言,交互模式是不常见的,因为它涉及循环L1和L5。 NM的NMR信号作图和生化分析表明DDX39和TAP与REF2-I的N和RRM结构域都相互作用,并表明这些蛋白质和RNA的结合将有利于这两个结构域的开放构象。 REF2-I上的RNA,TAP和DDX39结合位点接近,表明它们的结合可能是互斥的,这将导致在mRNA输出过程中发生连续的配体结合事件。

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