Zhou Jing, Bean Rebecca L, Vogt Volker M, Summers Michael
Howard Hughes Medical Institute and Department of Chemistry and Biochemistry, University of Maryland Baltimore County, 1000 Hilltop Circle, Baltimore, MD 21250, USA.
J Mol Biol. 2007 Jan 12;365(2):453-67. doi: 10.1016/j.jmb.2006.10.013. Epub 2006 Oct 10.
The 5'-untranslated region (5'-UTR) of retroviral genomes contains elements required for genome packaging during virus assembly. For many retroviruses, the packaging elements reside in non-contiguous segments that span most or all of the 5'-UTR. The Rous sarcoma virus (RSV) is an exception, in that its genome can be packaged efficiently by a relatively short, 82 nt segment of the 5'-UTR called muPsi. The RSV 5'-UTR also contains three translational start codons (AUG-1, AUG-2 and AUG-3) that have been controvertibly implicated in translation initiation and genome packaging, one of which (AUG-3) resides within the muPsi sequence. We demonstrated recently that muPsi is capable of binding to the cognate RSV nucleocapsid protein (NC) with high affinity (dissociation constant K(d) approximately 2 nM), and that residues of AUG-3 are essential for tight binding. We now report the solution structure of the NC:muPsi complex, determined using NMR data obtained for samples containing ((13)C,(15)N)-labeled NC and (2)H-enriched, nucleotide-specifically protonated RNAs. Upon NC binding, muPsi adopts a stable secondary structure that consists of three stem loops (SL-A, SL-B and SL-C) and an 8 bp stem (O3). Binding is mediated by the two zinc knuckle domains of NC. The N-terminal knuckle interacts with a conserved U(217)GCG tetraloop (a member of the UNCG family; N=A,U,G or C), and the C-terminal zinc knuckle binds to residues that flank SL-A, including residues of AUG-3. Mutations of critical nucleotides in these sequences compromise or abolish viral infectivity. Our studies reveal novel structural features important for NC:RNA binding, and support the hypothesis that AUG-3 is conserved for genome packaging rather than translational control.
逆转录病毒基因组的5'非翻译区(5'-UTR)包含病毒组装过程中基因组包装所需的元件。对于许多逆转录病毒而言,包装元件位于跨越5'-UTR大部分或全部的非连续片段中。劳氏肉瘤病毒(RSV)是个例外,其基因组可通过5'-UTR中一个相对较短的82个核苷酸的片段(称为μΨ)高效包装。RSV的5'-UTR还包含三个翻译起始密码子(AUG-1、AUG-2和AUG-3),它们在翻译起始和基因组包装中存在争议,其中一个(AUG-3)位于μΨ序列内。我们最近证明,μΨ能够以高亲和力(解离常数K(d)约为2 nM)与同源的RSV核衣壳蛋白(NC)结合,并且AUG-3的残基对于紧密结合至关重要。我们现在报告NC:μΨ复合物的溶液结构,该结构是使用从含有((13)C,(15)N)标记的NC和(2)H富集的、核苷酸特异性质子化RNA的样品中获得的NMR数据确定的。NC结合后,μΨ形成一种稳定的二级结构,由三个茎环(SL-A、SL-B和SL-C)和一个8 bp的茎(O3)组成。结合由NC的两个锌指结构域介导。N端锌指与保守的U(217)GCG四环(UNCG家族的成员;N = A、U、G或C)相互作用,C端锌指与SL-A侧翼的残基结合,包括AUG-3的残基。这些序列中关键核苷酸的突变会损害或消除病毒感染性。我们的研究揭示了对NC:RNA结合很重要的新结构特征,并支持AUG-3因基因组包装而非翻译控制而保守的假说。