Zhu Jian, Gopinath Kodetham, Murali Ayaluru, Yi Guanghui, Hayward S Diane, Zhu Heng, Kao Cheng
Department of Pharmacology and Molecular Sciences and High Throughput Biology Center, Johns Hopkins University School of Medicine, Baltimore, MD 21205, USA.
Proc Natl Acad Sci U S A. 2007 Feb 27;104(9):3129-34. doi: 10.1073/pnas.0611617104. Epub 2007 Feb 20.
Arrays of >5,000 Saccharomyces cerevisiae proteins were screened to identify proteins that can preferentially bind a small RNA hairpin that contains a clamped adenine motif (CAM). A CAM is required for the replication of Brome Mosaic Virus (BMV), a plant-infecting RNA virus that can replicate in S. cerevisiae. Several hits were selected for further characterization in Nicotiana benthamiana. Pseudouridine Synthase 4 (Pus4) and the Actin Patch Protein 1 (App1) modestly reduced BMV genomic plus-strand RNA accumulation, but dramatically inhibited BMV systemic spread in plants. Pus4 also prevented the encapsidation of a BMV RNA in plants and the reassembly of BMV virions in vitro. These results demonstrate the feasibility of using proteome arrays to identify specific RNA-binding proteins for antiviral activities. Furthermore, the effects of Pus4 suggest that the CAM-containing RNA motif provides a regulatory link between RNA replication and encapsidation.
对超过5000种酿酒酵母蛋白质阵列进行筛选,以鉴定能够优先结合包含钳制腺嘌呤基序(CAM)的小RNA发夹的蛋白质。CAM是雀麦花叶病毒(BMV)复制所必需的,BMV是一种可在酿酒酵母中复制的植物感染性RNA病毒。选择了几个命中的蛋白在本氏烟草中进行进一步表征。假尿苷合酶4(Pus4)和肌动蛋白斑块蛋白1(App1)适度降低了BMV基因组正链RNA的积累,但显著抑制了BMV在植物中的系统传播。Pus4还阻止了植物中BMV RNA的衣壳化以及体外BMV病毒粒子的重新组装。这些结果证明了使用蛋白质组阵列鉴定具有抗病毒活性的特定RNA结合蛋白的可行性。此外,Pus4的作用表明含CAM的RNA基序在RNA复制和衣壳化之间提供了一个调控联系。