Department of Molecular Genetics, Leiden Institute of Chemistry, Leiden University, P.O. Box 9502, Einsteinweg 55, 2300 RA, Leiden, The Netherlands.
J Virol. 2010 Feb;84(3):1423-9. doi: 10.1128/JVI.01443-09. Epub 2009 Nov 18.
The 3' termini of Alfalfa mosaic virus (AMV) RNAs adopt two mutually exclusive conformations, a coat protein binding (CPB) and a tRNA-like (TL) conformer, which consist of a linear array of stem-loop structures and a pseudoknot structure, respectively. Previously, switching between CPB and TL conformers has been proposed as a mechanism to regulate the competing processes of translation and replication of the viral RNA (R. C. L. Olsthoorn et al., EMBO J. 18:4856-4864, 1999). In the present study, the switch between CPB and TL conformers was further investigated. First, we showed that recognition of the AMV 3' untranslated region (UTR) by a tRNA-specific enzyme (CCA-adding enzyme) in vitro is more efficient when the distribution is shifted toward the TL conformation. Second, the recognition of the 3' UTR by the viral replicase was similarly dependent on the ratio of CBP and TL conformers. Furthermore, the addition of CP, which is expected to shift the distribution toward the CPB conformer, inhibited recognition by the CCA-adding enzyme and the replicase. Finally, we monitored how the binding affinity to CP is affected by this conformational switch in the yeast three-hybrid system. Here, disruption of the pseudoknot enhanced the binding affinity to CP by shifting the balance in favor of the CPB conformer, whereas stabilizing the pseudoknot did the reverse. Together, the in vitro and in vivo data clearly demonstrate the existence of the conformational switch in the 3' UTR of AMV RNAs.
紫花苜蓿花叶病毒 (AMV) RNA 的 3' 末端采用两种相互排斥的构象,一种是外壳蛋白结合 (CPB) 构象,另一种是 tRNA 样 (TL) 构象,分别由线性排列的茎环结构和假结结构组成。先前,CPB 和 TL 构象之间的转换被提议作为调节病毒 RNA 翻译和复制竞争过程的机制(R. C. L. Olsthoorn 等人,EMBO J. 18:4856-4864, 1999)。在本研究中,进一步研究了 CPB 和 TL 构象之间的转换。首先,我们表明,体外识别 AMV 3' 非翻译区 (UTR) 的 tRNA 特异性酶(CCA-添加酶)的效率更高,当分布向 TL 构象转移时。其次,病毒复制酶对 3'UTR 的识别也同样依赖于 CPB 和 TL 构象的比例。此外,CP 的添加(预计会将分布转移到 CPB 构象)抑制了 CCA-添加酶和复制酶的识别。最后,我们在酵母三杂交系统中监测了这种构象转换如何影响与 CP 的结合亲和力。在这里,破坏假结通过有利于 CPB 构象的平衡来增强与 CP 的结合亲和力,而稳定假结则相反。总之,体外和体内数据清楚地表明 AMV RNA 3'UTR 中存在构象转换。