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一种对独特RNA序列具有特异性的核仁PUF RNA结合蛋白。

A Nucleolar PUF RNA-binding Protein with Specificity for a Unique RNA Sequence.

作者信息

Zhang Chi, Muench Douglas G

机构信息

From the Department of Biological Sciences, University of Calgary, Calgary, Alberta T2N 1N4, Canada.

From the Department of Biological Sciences, University of Calgary, Calgary, Alberta T2N 1N4, Canada

出版信息

J Biol Chem. 2015 Dec 11;290(50):30108-18. doi: 10.1074/jbc.M115.691675. Epub 2015 Oct 20.

Abstract

PUF proteins are a conserved group of sequence specific RNA-binding proteins that bind to RNA in a modular fashion. The RNA-binding domain of PUF proteins typically consists of eight clustered Puf repeats. Plant genomes code for large families of PUF proteins that show significant variability in their predicted Puf repeat number, organization, and amino acid sequence. Here we sought to determine whether the observed variability in the RNA-binding domains of four plant PUFs results in a preference for nonclassical PUF RNA target sequences. We report the identification of a novel RNA binding sequence for a nucleolar Arabidopsis PUF protein that contains an atypical RNA-binding domain. The Arabidopsis PUM23 (APUM23) binding sequence was 10 nucleotides in length, contained a centrally located UUGA core element, and had a preferred cytosine at nucleotide position 8. These RNA sequence characteristics differ from those of other PUF proteins, because all natural PUFs studied to date bind to RNAs that contain a conserved UGU sequence at their 5' end and lack specificity for cytosine. Gel mobility shift assays validated the identity of the APUM23 binding sequence and supported the location of 3 of the 10 predicted Puf repeats in APUM23, including the cytosine-binding repeat. The preferred 10-nucleotide sequence bound by APUM23 is present within the 18S rRNA sequence, supporting the known role of APUM23 in 18S rRNA maturation. This work also reveals that APUM23, an ortholog of yeast Nop9, could provide an advanced structural backbone for Puf repeat engineering and target-specific regulation of cellular RNAs.

摘要

PUF蛋白是一组保守的序列特异性RNA结合蛋白,它们以模块化方式与RNA结合。PUF蛋白的RNA结合结构域通常由八个成簇的Puf重复序列组成。植物基因组编码大量的PUF蛋白家族,这些蛋白在预测的Puf重复序列数量、组织和氨基酸序列上表现出显著的变异性。在这里,我们试图确定四种植物PUF的RNA结合结构域中观察到的变异性是否导致对非经典PUF RNA靶序列的偏好。我们报告了一种含有非典型RNA结合结构域的拟南芥核仁PUF蛋白的新型RNA结合序列的鉴定。拟南芥PUM23(APUM23)结合序列长度为10个核苷酸,包含一个位于中心的UUGA核心元件,并且在核苷酸位置8处有一个优先的胞嘧啶。这些RNA序列特征与其他PUF蛋白不同,因为迄今为止研究的所有天然PUF都与在其5'端含有保守UGU序列且对胞嘧啶缺乏特异性的RNA结合。凝胶迁移率变动分析验证了APUM23结合序列的身份,并支持了APUM23中10个预测的Puf重复序列中的3个的位置,包括胞嘧啶结合重复序列。APUM23结合的优选10核苷酸序列存在于18S rRNA序列中,支持了APUM23在18S rRNA成熟中的已知作用。这项工作还表明,酵母Nop9的直系同源物APUM23可以为Puf重复序列工程和细胞RNA的靶标特异性调控提供先进的结构骨架。

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