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首页> 外文期刊>Journal of Molecular Biology >Identification of a high affinity nucleocapsid protein binding element within the Moloney murine leukemia virus Psi-RNA packaging signal: implications for genome recognition.
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Identification of a high affinity nucleocapsid protein binding element within the Moloney murine leukemia virus Psi-RNA packaging signal: implications for genome recognition.

机译:在莫洛尼氏鼠白血病病毒Psi-RNA包装信号中鉴定高亲和力核衣壳蛋白结合元件:对基因组识别的影响。

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Murine leukemia virus (MLV) is currently the most widely used gene delivery system in gene therapy trials. The simple retrovirus packages two copies of its RNA genome by a mechanism that involves interactions between the nucleocapsid (NC) domain of a virally-encoded Gag polyprotein and a segment of the RNA genome located just upstream of the Gag initiation codon, known as the Psi-site. Previous studies indicated that the MLV Psi-site contains three stem loops (SLB-SLD), and that stem loops SLC and SLD play prominent roles in packaging. We have developed a method for the preparation and purification of large quantities of recombinant Moloney MLV NC protein, and have studied its interactions with a series of oligoribonucleotides that contain one or more of the Psi-RNA stem loops. At RNA concentrations above approximately 0.3 mM, isolated stem loop SLB forms a duplex and stem loops SL-C and SL-D form kissing complexes, as expected from previous studies. However, neither the monomeric nor the dimeric formsof these isolated stem loops binds NC with significant affinity. Longer constructs containing two stem loops (SL-BC and SL-CD) also exhibit low affinities for NC. However, NC binds with high affinity and stoichiometrically to both the monomeric and dimeric forms of an RNA construct that contains all three stem loops (SL-BCD; K(d)=132(+/-55) nM). Titration of SL-BCD with NC also shifts monomer-dimer equilibrium toward the dimer. Mutagenesis experiments demonstrate that the conserved GACG tetraloops of stem loops C and D do not influence the monomer-dimer equilibrium of SL-BCD, that the tetraloop of stem loop B does not participate directly in NC binding, and that the tetraloops of stem loops C and D probably also do not bind to NC. These surprising results differ considerably from those observed for HIV-1, where NC binds to individual stem loops with high affinity via interactions with exposed residues of the tetraloops. The present results indicate that MLV NC binds to a pocket or surface that only exists in the presence of all three stem loops.
机译:鼠白血病病毒(MLV)是目前在基因治疗试验中使用最广泛的基因递送系统。简单的逆转录病毒通过一种机制包装其RNA基因组的两个副本,该机制涉及病毒编码的Gag多蛋白的核衣壳(NC)结构域与位于Gag起始密码子上游的RNA基因组片段(称为Psi)之间的相互作用-现场。先前的研究表明,MLV Psi位点包含三个茎环(SLB-SLD),并且茎环SLC和SLD在包装中起着重要作用。我们开发了一种制备和纯化大量重组莫洛尼MLV NC蛋白的方法,并研究了其与一系列含有一个或多个Psi-RNA茎环的寡核糖核苷酸的相互作用。如先前研究预期,在RNA浓度高于约0.3 mM时,分离的茎环SLB形成双链体,而茎环SL-C和SL-D形成接吻复合物。然而,这些分离的茎环的单体形式或二聚体形式都没有以显着的亲和力结合NC。包含两个茎环(SL-BC和SL-CD)的较长构建体对NC的亲和力也较低。但是,NC以高亲和力和化学计量结合到包含所有三个茎环(SL-BCD; K(d)= 132(+/- 55)nM)的RNA构建体的单体和二聚体形式。用NC滴定SL-BCD也会使单体-二聚体平衡移向二聚体。诱变实验表明,茎环C和D的保守GACG四环不影响SL-BCD的单体二聚体平衡,茎环B的四环不直接参与NC结合,茎环C的四环D也可能不绑定到NC。这些令人惊讶的结果与HIV-1观察到的结果大不相同,在HIV-1中,NC通过与四环的暴露残基相互作用,以高亲和力与单个茎环结合。目前的结果表明MLV NC绑定到仅存在所有三个茎环存在的口袋或表面。

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