Choi Y G, Grantham G L, Rao A L
Department of Plant Pathology, University of California, Riverside, California 92521-0122, USA.
Virology. 2000 May 10;270(2):377-85. doi: 10.1006/viro.2000.0312.
Specific interactions are likely to occur between the highly conserved N-proximal arginine-rich motif (ARM) of Brome mosaic virus (BMV) coat protein (CP) and each of three genomic RNAs and a single subgenomic RNA during in vivo encapsidation. To characterize these interactions, three independent deletions were engineered into a biologically active clone of BMV RNA3 (B3) such that the matured CP of each B3 variant precisely lacks either the entire ARM (B3/Delta919) or two consecutive arginine residues (B3/13DeltaDelta14 and B3/18DeltaDelta19) within the ARM. Analysis of virion RNA for each B3 variant recovered from symptomatic leaves of Chenopodium quinoa revealed that the interactions between the N-terminal ARM of BMV CP and each of three genomic RNAs is distinct. Northern blot hybridization of B3Delta919 virion RNA revealed that the deleted ARM region specifically affected the stability of virions containing RNA1. An abundant truncated RNA species recurrently found in the virions of B3Delta919 was identified to be a derivative of genomic RNA1, lacking the 5' 943 nucleotides. Additional Northern blot analysis of virion RNAs from B3/Delta919, B3/13DeltaDelta14, and B3/18DeltaDelta19, and in vitro reassembly assays revealed that the N-terminal ARM region contains crucial amino acids required for RNA4 packaging, independent of genomic RNA3. The significance of these observations in relation to Bromovirus CP-RNA interactions during virion assembly is discussed.
在体内衣壳化过程中,雀麦花叶病毒(BMV)外壳蛋白(CP)高度保守的N端富含精氨酸基序(ARM)可能与三个基因组RNA和一个亚基因组RNA分别发生特异性相互作用。为了表征这些相互作用,对BMV RNA3(B3)的一个生物活性克隆进行了三个独立的缺失改造,使得每个B3变体的成熟CP精确地缺失整个ARM(B3/Delta919)或ARM内的两个连续精氨酸残基(B3/13DeltaDelta14和B3/18DeltaDelta19)。对从藜麦有症状叶片中回收的每个B3变体的病毒粒子RNA进行分析,结果表明BMV CP的N端ARM与三个基因组RNA之间的相互作用是不同的。对B3Delta919病毒粒子RNA的Northern印迹杂交显示,缺失的ARM区域特异性地影响了含有RNA1的病毒粒子的稳定性。在B3Delta919病毒粒子中反复发现的一种丰富的截短RNA物种被鉴定为基因组RNA1的衍生物,缺少5'端943个核苷酸。对来自B3/Delta919、B3/13DeltaDelta14和B3/18DeltaDelta19的病毒粒子RNA进行的额外Northern印迹分析以及体外重组试验表明,N端ARM区域包含RNA4包装所需的关键氨基酸,与基因组RNA3无关。讨论了这些观察结果在病毒粒子组装过程中与雀麦病毒CP-RNA相互作用的相关性。