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人干扰素诱导蛋白激酶双链RNA结合结构域的鉴定

Identification of the double-stranded RNA-binding domain of the human interferon-inducible protein kinase.

作者信息

Patel R C, Sen G C

机构信息

Department of Molecular Biology, Cleveland Clinic Foundation, Ohio 44195.

出版信息

J Biol Chem. 1992 Apr 15;267(11):7671-6.

PMID:1373135
Abstract

The interferon-inducible double-stranded (ds) RNA-activated protein kinase (p68 kinase) is a physiologically important enzyme that regulates the rate of cellular and viral protein synthesis by phosphorylating and thereby inactivating the peptide chain initiation factor 2. We have generated a cDNA clone of the human p68 kinase by polymerase chain reaction cloning using the recently published sequence of this enzyme. Active enzyme was synthesized by in vitro transcription-translation of the cDNA clone. This system was used for mapping the dsRNA-binding domain of the enzyme. Progressive deletions from the carboxyl terminus were introduced by digesting the cDNA with suitable restriction enzymes. Expression of proteins harboring deletions from the amino terminus was achieved by cloning DNA fragments into appropriately constructed expression vectors. Affinity of the truncated proteins for dsRNA was examined by testing their capacity to bind to dsRNA-agarose beads. Our results demonstrated that the dsRNA-binding domain lies at the amino terminus of the protein. A truncated protein containing the first 170 amino acid residues from the amino terminus could bind to dsRNA. However, deletion of 34 residues from the amino terminus or 41 residues from the carboxyl terminus of this truncated protein eliminated its dsRNA-binding activity. Comparison of the primary structure and the secondary structure of this region of p68 kinase and the corresponding region of 2'-5'-oligoadenylate synthetase revealed no apparent similarity.

摘要

干扰素诱导的双链(ds)RNA激活蛋白激酶(p68激酶)是一种在生理上具有重要意义的酶,它通过磷酸化肽链起始因子2并使其失活来调节细胞和病毒蛋白的合成速率。我们利用最近公布的该酶序列,通过聚合酶链反应克隆技术获得了人p68激酶的cDNA克隆。通过对该cDNA克隆进行体外转录-翻译合成了活性酶。该系统用于绘制该酶的dsRNA结合结构域。通过用合适的限制酶消化cDNA,从羧基末端进行逐步缺失。通过将DNA片段克隆到适当构建的表达载体中,实现了从氨基末端缺失的蛋白质的表达。通过测试截短蛋白与dsRNA-琼脂糖珠结合的能力,检测了它们对dsRNA的亲和力。我们的结果表明,dsRNA结合结构域位于该蛋白的氨基末端。一个从氨基末端包含前170个氨基酸残基的截短蛋白能够与dsRNA结合。然而,从该截短蛋白的氨基末端缺失34个残基或从羧基末端缺失41个残基会消除其dsRNA结合活性。对p68激酶该区域的一级结构和二级结构与2'-5'-寡腺苷酸合成酶相应区域进行比较,未发现明显相似性。

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