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Structural insights into the cTAR DNA recognition by the HIV-1 nucleocapsid protein: role of sugar deoxyriboses in the binding polarity of NC

机译:HIV-1核衣壳蛋白对cTAR DNA识别的结构见解:糖脱氧核糖在NC结合极性中的作用

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摘要

An essential step of the reverse transcription of the HIV-1 genome is the first strand transfer that requires the annealing of the TAR RNA hairpin to the cTAR DNA hairpin. HIV-1 nucleocapsid protein (NC) plays a crucial role by facilitating annealing of the complementary hairpins. Using nuclear magnetic resonance and gel retardation assays, we investigated the interaction between NC and the top half of the cTAR DNA (mini-cTAR). We show that NC(11-55) binds the TGG sequence in the lower stem that is destabilized by the adjacent internal loop. The 5′ thymine interacts with residues of the N-terminal zinc knuckle and the 3′ guanine is inserted in the hydrophobic plateau of the C-terminal zinc knuckle. The TGG sequence is preferred relative to the apical and internal loops containing unpaired guanines. Investigation of the DNA–protein contacts shows the major role of hydrophobic interactions involving nucleobases and deoxyribose sugars. A similar network of hydrophobic contacts is observed in the published NC:DNA complexes, whereas NC contacts ribose differently in NC:RNA complexes. We propose that the binding polarity of NC is related to these contacts that could be responsible for the preferential binding to single-stranded nucleic acids.
机译:HIV-1基因组逆转录的重要步骤是第一条链转移,这需要将TAR RNA发夹退火到cTAR DNA发夹进行退火。 HIV-1核衣壳蛋白(NC)通过促进互补发夹的退火发挥关键作用。使用核磁共振和凝胶阻滞分析,我们研究了NC和cTAR DNA(mini-cTAR)上半部分之间的相互作用。我们显示NC(11-55)绑定在TGG序列在下部茎中被相邻的内部环不稳定。 5'胸腺嘧啶与N末端锌指的残基相互作用,而3'鸟嘌呤插入C末端锌指的疏水平台。相对于含有未配对鸟嘌呤的顶端和内部环,TGG序列是优选的。 DNA-蛋白质接触的研究表明疏水相互作用的主要作用涉及核碱基和脱氧核糖。在已发表的NC:DNA配合物中观察到类似的疏水性接触网络,而NC:RNA配合物中NC接触核糖的方式不同。我们提出,NC的结合极性与这些可能与单链核酸优先结合的接触有关。

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