Bhardwaj Kanchan, Sun Jingchuan, Holzenburg Andreas, Guarino Linda A, Kao C Cheng
Department of Biochemistry and Biophysics, Texas A&M University, College Station, TX 77843-2128, USA.
J Mol Biol. 2006 Aug 11;361(2):243-56. doi: 10.1016/j.jmb.2006.06.021. Epub 2006 Jun 27.
The emerging disease SARS is caused by a novel coronavirus that encodes several unusual RNA-processing enzymes, including non-structural protein 15 (Nsp15), a hexameric endoribonuclease that preferentially cleaves at uridine residues. How Nsp15 recognizes and cleaves RNA is not well understood and is the subject of this study. Based on the analysis of RNA products separated by denaturing gel electrophoresis, Nsp15 has been reported to cleave both 5' and 3' of the uridine. We used several RNAs, including some with nucleotide analogs, and mass spectrometry to determine that Nsp15 cleaves only 3' of the recognition uridylate, with some cleavage 3' of cytidylate. A highly conserved RNA structure in the 3' non-translated region of the SARS virus was cleaved preferentially at one of the unpaired uridylate bases, demonstrating that both RNA structure and base-pairing can affect cleavage by Nsp15. Several modified RNAs that are not cleaved by Nsp15 can bind Nsp15 as competitive inhibitors. The RNA binding affinity of Nsp15 increased with the content of uridylate in substrate RNA and the co-factor Mn(2+). The hexameric form of Nsp15 was found to bind RNA in solution. A two-dimensional crystal of Nsp15 in complex with RNA showed that at least two RNA molecules could be bound per hexamer. Furthermore, an 8.3 A structure of Nsp15 was developed using cyroelectron microscopy, allowing us to generate a model of the Nsp15-RNA complex.
新出现的严重急性呼吸综合征(SARS)是由一种新型冠状病毒引起的,该病毒编码几种不寻常的RNA加工酶,包括非结构蛋白15(Nsp15),一种六聚体内切核糖核酸酶,优先在尿苷残基处切割。Nsp15如何识别和切割RNA尚不清楚,是本研究的主题。基于对变性凝胶电泳分离的RNA产物的分析,据报道Nsp15在尿苷的5'和3'端都有切割。我们使用了几种RNA,包括一些带有核苷酸类似物的RNA,并通过质谱法确定Nsp15仅在识别尿苷酸的3'端切割,在胞苷酸的3'端也有一些切割。严重急性呼吸综合征病毒3'非翻译区高度保守的RNA结构优先在未配对的尿苷酸碱基之一处被切割,这表明RNA结构和碱基配对都可以影响Nsp15的切割。几种不被Nsp15切割的修饰RNA可以作为竞争性抑制剂与Nsp15结合。Nsp15的RNA结合亲和力随着底物RNA中尿苷酸含量和辅因子Mn(2+)的增加而增加。发现Nsp15的六聚体形式在溶液中与RNA结合。Nsp15与RNA复合物的二维晶体显示每个六聚体至少可以结合两个RNA分子。此外,利用冷冻电子显微镜技术构建了Nsp15的8.3埃结构,使我们能够生成Nsp15-RNA复合物的模型。