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Nova K-同源结构域RNA序列特异性的测定与增强

Determination and augmentation of RNA sequence specificity of the Nova K-homology domains.

作者信息

Musunuru Kiran, Darnell Robert B

机构信息

Laboratory of Molecular Neuro-Oncology, The Rockefeller University, 1230 York Avenue, New York, NY 10021, USA.

出版信息

Nucleic Acids Res. 2004 Sep 14;32(16):4852-61. doi: 10.1093/nar/gkh799. Print 2004.

Abstract

The Nova onconeural antigens are implicated in the pathogenesis of paraneoplastic opsoclonus-myoclonus-ataxia (POMA). The Nova antigens are neuron-specific RNA-binding proteins harboring three repeats of the K-homology (KH) motif; they have been implicated in the regulation of alternative splicing of a host of genes involved in inhibitory synaptic transmission. Although the third Nova KH domain (KH3) has been extensively characterized using biochemical and crystallographic techniques, the roles of the KH1 and KH2 domains remain unclear. Furthermore, the specificity determinants that distinguish the Nova KH domains from those of the closely related hnRNP E and hnRNP K proteins are undefined. We demonstrate through the use of RNA selection and biochemical analysis that the sequence specificity of the Nova KH1/2 domains is similar to that of Nova KH3. We also show that the mutagenesis of a Nova KH domain to render it similar to the KH domains of the heterogeneous nuclear ribonucleoprotein E (hnRNP E) and hnRNP K allow it to recognize longer RNA sequences. These data yield important insights into KH domain function and suggest a strategy by which to engineer KH domains with novel sequence preferences.

摘要

诺瓦肿瘤神经抗原与副肿瘤性眼阵挛-肌阵挛-共济失调(POMA)的发病机制有关。诺瓦抗原是具有三个K-同源(KH)基序重复序列的神经元特异性RNA结合蛋白;它们参与了许多与抑制性突触传递相关基因的可变剪接调控。尽管已经使用生化和晶体学技术对第三个诺瓦KH结构域(KH3)进行了广泛的表征,但KH1和KH2结构域的作用仍不清楚。此外,区分诺瓦KH结构域与密切相关的异质性核糖核蛋白E(hnRNP E)和hnRNP K蛋白的特异性决定因素尚未明确。我们通过RNA筛选和生化分析证明,诺瓦KH1/2结构域的序列特异性与诺瓦KH3相似。我们还表明,将诺瓦KH结构域进行诱变使其与异质性核糖核蛋白E(hnRNP E)和hnRNP K的KH结构域相似,可使其识别更长的RNA序列。这些数据为KH结构域的功能提供了重要见解,并提出了一种构建具有新序列偏好的KH结构域的策略。

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