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通过亲和裂解揭示PKR的RNA结合结构域的选择性结合。

Selective binding by the RNA binding domain of PKR revealed by affinity cleavage.

作者信息

Spanggord R J, Beal P A

机构信息

Department of Chemistry, University of Utah, Salt Lake City, Utah 84112, USA.

出版信息

Biochemistry. 2001 Apr 10;40(14):4272-80. doi: 10.1021/bi002512w.

Abstract

The RNA-dependent protein kinase (PKR) is regulated by the binding of double-stranded RNA (dsRNA) or single-stranded RNAs with extensive duplex secondary structure. PKR has an RNA binding domain (RBD) composed of two copies of the dsRNA binding motif (dsRBM). The dsRBM is an alpha-beta-beta-beta-alpha structure present in a number of proteins that bind RNA, and the selectivity demonstrated by these proteins is currently not well understood. We have used affinity cleavage to study the binding of PKR's RBD to RNA. In this study, we site-specifically modified the first dsRBM of PKR's RBD at two different amino acid positions with the hydroxyl radical generator EDTA.Fe. Cleavage by these proteins of a synthetic stem-loop ligand of PKR indicates that PKR's dsRBMI binds the RNA in a preferred orientation, placing the loop between strands beta1 and beta2 near the single-stranded RNA loop. Additional cleavage experiments demonstrated that defects in the RNA stem, such as an A bulge and two GA mismatches, do not dictate dsRBMI's binding orientation preference. Cleavage of VA(I) RNA, an adenoviral RNA inhibitor of PKR, indicates that dsRBMI is bound near the loop of the apical stem of this RNA in the same orientation as observed with the synthetic stem-loop RNA ligands. This work, along with an NMR study of the binding of a dsRBM derived from the Drosophila protein Staufen, indicates that dsRBMs can bind stem-loop RNAs in distinct ways. In addition, the successful application of the affinity cleavage technique to localizing dsRBMI of PKR on stem-loop RNAs and defining its orientation suggests this approach could be applied to dsRBMs found in other proteins.

摘要

RNA依赖性蛋白激酶(PKR)受双链RNA(dsRNA)或具有广泛双链二级结构的单链RNA结合的调节。PKR具有一个RNA结合结构域(RBD),由两个双链RNA结合基序(dsRBM)拷贝组成。dsRBM是一种存在于许多与RNA结合的蛋白质中的α-β-β-β-α结构,目前这些蛋白质所表现出的选择性尚未得到很好的理解。我们利用亲和切割来研究PKR的RBD与RNA的结合。在本研究中,我们用羟基自由基发生器EDTA.Fe在两个不同的氨基酸位置对PKR的RBD的第一个dsRBM进行位点特异性修饰。这些蛋白质对PKR的合成茎环配体的切割表明,PKR的dsRBMI以优先取向结合RNA,将β1链和β2链之间的环置于单链RNA环附近。额外的切割实验表明,RNA茎中的缺陷,如A凸起和两个GA错配,并不决定dsRBMI的结合取向偏好。对PKR的腺病毒RNA抑制剂VA(I) RNA的切割表明,dsRBMI以与合成茎环RNA配体相同的取向结合在该RNA顶端茎环的环附近。这项工作,连同对果蝇蛋白Staufen衍生的dsRBM结合的核磁共振研究,表明dsRBM可以以不同的方式结合茎环RNA。此外,亲和切割技术成功应用于定位PKR的dsRBMI在茎环RNA上并确定其取向,表明该方法可应用于其他蛋白质中的dsRBM。

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