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Intrinsically disordered regions of nucleophosmin/B23 regulate its RNA binding activity through their inter- and intra-molecular association

机译:核磷蛋白/ B23的内在无序区域通过其分子间和分子内结合调节其RNA结合活性

摘要

Nucleophosmin (NPM1/B23) is a nucleolar protein implicated in growth-associated functions, in which the RNA binding activity of B23 plays essential roles in ribosome biogenesis. The C-terminal globular domain (CTD) of B23 has been believed to be the RNA binding domain because the splicing variant B23.2 lacking the CTD binds considerably less efficiently to RNA. However, the recognition of target RNAs by B23 remains poorly understood. Herein, we report a novel mechanism by which B23 recognizes specific RNA targets. We observed that the nucleolar retention of B23.3 lacking the basic region of B23.1 was lower than that of B23.1 because of its low RNA binding activity. Circular dichroism measurements indicated that the basic region and adjacent acidic regions of B23 are intrinsically disordered regions (IDRs). Biochemical analyses revealed that the basic IDR alone strongly binds to RNA with low specificity. The excessive RNA binding activity of the basic IDR was restrained by intra-molecular interaction with the acidic IDR of B23. Chemical cross-linking experiments and fluorescent labeling of bipartite tetracysteine-tagged proteins suggested that the inter- and intra-molecular interactions between the two IDRs contribute to the regulation of the RNA binding activity of CTD to control the cellular localization and functions of B23.
机译:核蛋白(NPM1 / B23)是一种与生长相关的功能有关的核仁蛋白,其中B23的RNA结合活性在核糖体生物发生中起重要作用。人们认为B23的C端球形结构域(CTD)是RNA结合结构域,因为缺少CTD的剪接变体B23.2与RNA的结合效率大大降低。但是,对B23对靶RNA的识别仍然知之甚少。在这里,我们报告B23识别特定RNA靶标的新型机制。我们观察到缺少B23.1基本区域的B23.3的核仁保留比B23.1低,因为它的RNA结合活性低。圆二色性测量表明,B23的碱性区域和相邻的酸性区域是固有无序区(IDR)。生化分析表明,基本的IDR仅以低特异性即可与RNA牢固结合。通过与B23的酸性IDR的分子内相互作用,抑制了基本IDR的过量RNA结合活性。化学交联实验和双半胱氨酸标签的蛋白质的荧光标记表明,两个IDR之间的分子间和分子内相互作用有助于调节CTD的RNA结合活性,从而控制B23的细胞定位和功能。

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