HIV Drug Resistance Program, Reverse Transcriptase Biochemistry Section, Frederick National Laboratory for Cancer Research, Frederick, MD 21702, USA.
Nucleic Acids Res. 2013 Jul;41(13):6637-49. doi: 10.1093/nar/gkt353. Epub 2013 May 2.
Interaction between the viral protein Rev and the RNA motifs known as Rev response elements (RREs) is required for transport of unspliced and partially spliced human immunodeficiency virus (HIV)-1 and HIV-2 RNAs from the nucleus to the cytoplasm during the later stages of virus replication. A more detailed understanding of these nucleoprotein complexes and the host factors with which they interact should accelerate the development of new antiviral drugs targeting cis-acting RNA regulatory signals. In this communication, the secondary structures of the HIV-2 RRE and two RNA folding precursors have been identified using the SHAPE (selective 2'-hydroxyl acylation analyzed by primer extension) chemical probing methodology together with a novel mathematical approach for determining the secondary structures of RNA conformers present in a mixture. A complementary chemical probing technique was also used to support these secondary structure models, to confirm that the RRE2 RNA undergoes a folding transition and to obtain information about the relative positioning of RRE2 substructures in three dimensions. Our analysis collectively suggests that the HIV-2 RRE undergoes two conformational transitions before assuming the energetically most favorable conformer. The 3D models for the HIV-2 RRE and folding intermediates are also presented, wherein the Rev-binding stem-loops (IIB and I) are located coaxially in the former, which is in agreement with previous models for HIV-1 Rev-RRE binding.
病毒蛋白 Rev 与 RNA 基序(称为 Rev 反应元件,RRE)之间的相互作用,对于在病毒复制的后期阶段将未剪接和部分剪接的人免疫缺陷病毒(HIV)-1 和 HIV-2 RNA 从细胞核转运到细胞质是必需的。更详细地了解这些核蛋白复合物以及与它们相互作用的宿主因子,应该会加速开发针对顺式作用 RNA 调节信号的新型抗病毒药物。在本通讯中,使用 SHAPE(通过引物延伸进行选择性 2'-羟基乙酰化分析)化学探测方法以及用于确定混合物中存在的 RNA 构象的二级结构的新型数学方法,确定了 HIV-2 RRE 和两个 RNA 折叠前体的二级结构。还使用互补的化学探测技术来支持这些二级结构模型,以确认 RRE2 RNA 经历折叠转变,并获得有关 RRE2 亚结构在三维空间中相对定位的信息。我们的分析共同表明,HIV-2 RRE 在采用最有利的能量构象之前经历了两次构象转变。还呈现了 HIV-2 RRE 和折叠中间体的 3D 模型,其中 Rev 结合的茎环(IIB 和 I)在前者中同轴定位,这与 HIV-1 Rev-RRE 结合的先前模型一致。