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RNA结合结构域、连接子结构域以及RNA结构对核仁素RBD12/NRE相互作用的特异性和亲和力的贡献。

Contributions of the RNA-binding and linker domains and RNA structure to the specificity and affinity of the nucleolin RBD12/NRE interaction.

作者信息

Finger L David, Johansson Carina, Rinaldi Bruno, Bouvet Philippe, Feigon Juli

机构信息

Department of Chemistry and Biochemistry, and Molecular Biology Institute, University of California, Los Angeles, California 90095-1569, USA.

出版信息

Biochemistry. 2004 Jun 8;43(22):6937-47. doi: 10.1021/bi049904d.

Abstract

Nucleolin is a multidomain phosphoprotein involved in ribosome biogenesis. In vitro selection and binding studies with pre-rRNA fragments have shown that the first two RNA-binding domains (RBDs) in nucleolin (RBD12) recognize the consensus sequence (U/G)CCCG(A/G) in the context of a stem-loop structure (nucleolin-recognition element = NRE). Structural studies of nucleolin RBD12 in complex with an in vitro selected NRE (sNRE) and a natural pre-rRNA NRE (b2NRE) have revealed that sequence-specific binding of the consensus NRE is achieved in a similar manner in both complexes using residues in both RBDs as well as the linker connecting them. Using fluorescence anisotropy (FA) and nuclear magnetic resonance (NMR), we demonstrate the importance of the linker for NRE affinity by showing that only the individual RBDs with the linker attached retain the ability to specifically bind, albeit weakly, to sNRE and b2NRE. Binding of RBD1 and RBD2 to the NREs in trans is not detected even when one of the RBDs has the linker attached, which suggests that the linker also contributes to the affinity by tethering the two RBDs. To determine if binding of nucleolin RBD12 to natural NREs is dependent on a specific RNA stem-loop structure, as was the case for the sNRE, we conducted FA and NMR binding assays with nucleolin RBD12 and a single-stranded NRE. The results show that nucleolin RBD12 sequence-specifically binds a single-stranded NRE with an affinity similar to that for b2NRE, indicating that a stem-loop structure is not required for the nucleolin RBD12/pre-rRNA NRE interaction.

摘要

核仁素是一种参与核糖体生物合成的多结构域磷蛋白。对前体rRNA片段进行的体外筛选和结合研究表明,核仁素中的前两个RNA结合结构域(RBD1和RBD2)在茎环结构(核仁素识别元件=NRE)的背景下识别共有序列(U/G)CCCG(A/G)。对与体外筛选的NRE(sNRE)和天然前体rRNA NRE(b2NRE)形成复合物的核仁素RBD12进行的结构研究表明,在这两种复合物中,共有NRE的序列特异性结合是以相似的方式实现的,使用了RBD1和RBD2中的残基以及连接它们的接头。通过荧光各向异性(FA)和核磁共振(NMR),我们证明了接头对NRE亲和力的重要性,结果表明只有连接有接头的单个RBD能够特异性结合sNRE和b2NRE,尽管结合较弱。即使其中一个RBD连接有接头,也未检测到RBD1和RBD2与NRE的反式结合,这表明接头还通过连接两个RBD来促进亲和力。为了确定核仁素RBD12与天然NRE的结合是否像sNRE那样依赖于特定的RNA茎环结构,我们用核仁素RBD12和单链NRE进行了FA和NMR结合试验。结果表明,核仁素RBD12能序列特异性地结合单链NRE,其亲和力与b2NRE相似,这表明核仁素RBD12/前体rRNA NRE相互作用不需要茎环结构。

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