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Coordinated Action of Two Double-Stranded RNA Binding Motifs and an RGG Motif Enables Nuclear Factor 90 To Flexibly Target Different RNA Substrates

机译:两个双链RNA结合母题和一个RGG母题的协调行动使核因子90灵活地针对不同的RNA底物。

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The mechanisms of how RNA binding proteins (RBP) bind to and distinguish different RNA molecules are yet uncertain. Here, we performed a comprehensive analysis of the RNA binding properties of multidomain RBP nuclear factor 90 (NF90) by investigating specifically the functional activities of two double stranded RNA binding motifs (dsRBM) and an RGG motif in the protein's unstructured C-terminus. By comparison of the RNA binding affinities of several NF90 variants and their modes of binding to a set of defined RNA molecules, the activities of the motifs turned out to be very different. While dsRBM1 contributes little to RNA binding, dsRBM2 is essential for effective binding of double-stranded RNA. The protein's immediate C-terminus, including the RGG motif; is indispensable for interactions of the protein with single-stranded RNA, and the RGG motif decisively contributes to NF90's overall RNA binding properties. Conformational studies, which compared wild-type NF90 with a variant that contains a pseudophosphorylated residue in the RGG motif, suggest that the NF90 C-terminus is involved in conformational changes in the protein after RNA binding, with the RGG motif acting as a central regulatory element. In summary, our data propose a concerted action of all RNA binding motifs within the frame of the full-length protein, which may be controlled by regulation of the activity of the RGG motif, e.g., by phosphorylation. This multidomain interplay enables the RBP NF90 to discriminate RNA features by dynamic and adaptable interactions.
机译:RNA结合蛋白(RBP)如何结合并区分不同的RNA分子的机制尚不确定。在这里,我们通过专门研究蛋白质的非结构化C末端中的两个双链RNA结合基序(dsRBM)和RGG基序的功能活性,对多域RBP核因子90(NF90)的RNA结合特性进行了全面分析。通过比较几种NF90变体的RNA结合亲和力以及它们与一组确定的RNA分子的结合方式,发现这些基序的活性非常不同。尽管dsRBM1对RNA结合的贡献很小,但dsRBM2对于有效结合双链RNA必不可少。蛋白质的直接C末端,包括RGG基序;对于蛋白质与单链RNA的相互作用是必不可少的,RGG基序决定性地有助于NF90的整体RNA结合特性。构象研究比较了野生型NF90和在RGG基序中包含伪磷酸化残基的变异体,表明NF90 C末端参与RNA结合后蛋白质的构象变化,其中RGG基序起着中心调节作用元件。总而言之,我们的数据提出了全长蛋白质框架内所有RNA结合基序的协同作用,这可以通过调节RGG基序的活性例如通过磷酸化来控制。这种多域相互作用使RBP NF90能够通过动态和适应性相互作用来区分RNA特征。

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