Lõhmus Andres, Varjosalo Markku, Mäkinen Kristiina
Department of Food and Environmental Sciences, Viikki Plant Science Centre, 00014 University of Helsinki, Finland.
Institute of Biotechnology, 00014 University of Helsinki, Finland.
Mol Plant Pathol. 2016 Aug;17(6):943-58. doi: 10.1111/mpp.12341. Epub 2016 Feb 17.
The definition of the precise molecular composition of membranous replication compartments is a key to understanding the mechanisms of virus multiplication. Here, we set out to investigate the protein composition of the potyviral replication complexes. We purified the potyviral 6K2 protein-induced membranous structures from Potato virus A (PVA)-infected Nicotiana benthamiana plants. For this purpose, the 6K2 protein, which is the main inducer of potyviral membrane rearrangements, was expressed in fusion with an N-terminal Twin-Strep-tag and Cerulean fluorescent protein (SC6K) from the infectious PVA cDNA. A non-tagged Cerulean-6K2 (C6K) virus and the SC6K protein alone in the absence of infection were used as controls. A purification scheme exploiting discontinuous sucrose gradient centrifugation followed by Strep-tag-based affinity chromatography was developed. Both (+)- and (-)-strand PVA RNA and viral protein VPg were co-purified specifically with the affinity tagged PVA-SC6K. The purified samples, which contained individual vesicles and membrane clusters, were subjected to mass spectrometry analysis. Data analysis revealed that many of the detected viral and host proteins were either significantly enriched or fully specifically present in PVA-SC6K samples when compared with the controls. Eight of eleven potyviral proteins were identified with high confidence from the purified membrane structures formed during PVA infection. Ribosomal proteins were identified from the 6K2-induced membranes only in the presence of a replicating virus, reinforcing the tight coupling between replication and translation. A substantial number of proteins associating with chloroplasts and several host proteins previously linked with potyvirus replication complexes were co-purified with PVA-derived SC6K, supporting the conclusion that the host proteins identified in this study may have relevance in PVA replication.
确定膜状复制区室精确的分子组成是理解病毒增殖机制的关键。在此,我们着手研究马铃薯Y病毒属病毒复制复合体的蛋白质组成。我们从感染马铃薯A病毒(PVA)的本氏烟草植株中纯化了马铃薯Y病毒属病毒6K2蛋白诱导形成的膜状结构。为此,将作为马铃薯Y病毒属病毒膜重排主要诱导因子的6K2蛋白与来自感染性PVA cDNA的N端双Strep标签和天蓝荧光蛋白(SC6K)融合表达。未标记的天蓝6K2(C6K)病毒以及未感染时单独的SC6K蛋白用作对照。我们开发了一种利用不连续蔗糖梯度离心,随后进行基于Strep标签的亲和层析的纯化方案。正链和负链PVA RNA以及病毒蛋白VPg均与亲和标签化的PVA-SC6K特异性共纯化。将包含单个囊泡和膜簇的纯化样品进行质谱分析。数据分析显示,与对照相比,许多检测到的病毒蛋白和宿主蛋白在PVA-SC6K样品中显著富集或完全特异性存在。从PVA感染期间形成的纯化膜结构中高度可靠地鉴定出了11种马铃薯Y病毒属病毒蛋白中的8种。仅在存在复制病毒的情况下,才从6K2诱导的膜中鉴定出核糖体蛋白,这加强了复制与翻译之间的紧密联系。大量与叶绿体相关的蛋白以及先前与马铃薯Y病毒属病毒复制复合体相关的几种宿主蛋白与源自PVA的SC6K共纯化,支持了本研究中鉴定出的宿主蛋白可能与PVA复制相关的结论。