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HIV-2前导RNA中二聚化信号与衣壳化信号之间的结构联系。

A structural linkage between the dimerization and encapsidation signals in HIV-2 leader RNA.

作者信息

Lanchy Jean-Marc, Ivanovitch John D, Lodmell J Stephen

机构信息

Division of Biological Sciences, The University of Montana, Missoula, Montana 59812, USA.

出版信息

RNA. 2003 Aug;9(8):1007-18. doi: 10.1261/rna.5590603.

Abstract

The 5' untranslated leader region of retroviral RNAs contains noncoding information that is essential for viral replication, including signals for transcriptional transactivation, splicing, primer binding for reverse transcription, dimerization of the genomic RNA, and encapsidation of the viral RNA into virions. These RNA motifs have considerable structural and functional overlap. In this study, we investigate the conformational dynamics associated with the use and silencing of a sequence in HIV-2 RNA that is involved in genomic RNA dimerization called stem-loop 1 (SL1) and its relationship with a flanking sequence that is known to be important for encapsidation of viral RNAs. We demonstrate that a long-distance intramolecular interaction between nucleotides located upstream of the primer-binding site domain and nucleotides encompassing the Gag translation start codon functionally silences SL1 as a dimerization element. This silencing can be relieved by mutation or by hybridization of an oligonucleotide that disrupts the long-distance interaction. Furthermore, we identify a palindrome within the packaging/encapsidation signal Psi (just 5' of SL1) that can either serve as an efficient dimerization signal itself, or can mediate SL1 silencing through base pairing with SL1. These results provide a tangible link between the functions of genomic RNA dimerization and encapsidation, which are known to be related, but whose physical relationship has been unclear. A model is proposed that accounts for observations of dimerization, packaging, and translation of viral RNAs during different phases of the viral replication cycle.

摘要

逆转录病毒RNA的5'非翻译前导区包含对病毒复制至关重要的非编码信息,包括转录反式激活、剪接、逆转录引物结合、基因组RNA二聚化以及病毒RNA包装到病毒粒子中的信号。这些RNA基序在结构和功能上有相当大的重叠。在本研究中,我们研究了与HIV-2 RNA中一个参与基因组RNA二聚化的序列(称为茎环1,SL1)的使用和沉默相关的构象动力学,以及它与一个已知对病毒RNA包装很重要的侧翼序列的关系。我们证明,引物结合位点结构域上游的核苷酸与包含Gag翻译起始密码子的核苷酸之间的长距离分子内相互作用在功能上使SL1作为二聚化元件沉默。这种沉默可以通过突变或破坏长距离相互作用的寡核苷酸杂交来解除。此外,我们在包装/衣壳化信号Ψ(就在SL1的5'端)内鉴定出一个回文序列,它本身可以作为一个有效的二聚化信号,或者可以通过与SL1碱基配对来介导SL1沉默。这些结果在基因组RNA二聚化和衣壳化的功能之间建立了切实的联系,已知这两者是相关的,但其物理关系尚不清楚。我们提出了一个模型,解释了病毒复制周期不同阶段病毒RNA的二聚化、包装和翻译的观察结果。

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