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Essential structural requirements for specific recognition of HIV TAR RNA by peptide mimetics of Tat protein.

机译:通过Tat蛋白的肽模拟物特异性识别HIV TAR RNA的基本结构要求。

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The pharmacological disruption of the interaction between the HIV Tat protein and its cognate transactivation response RNA (TAR) would generate novel anti-viral drugs with a low susceptibility to drug resistance, but efforts to discover ligands with sufficient potency to warrant pharmaceutical development have been unsuccessful. We have previously described a family of structurally constrained -hairpin peptides that potently inhibits viral growth in HIV-infected cells. The nuclear magnetic resonance (NMR) structure of an inhibitory complex revealed that the peptide makes intimate contacts with the 3-nt bulge and the upper helix of the RNA hairpin, but that a single residue contacts the apical loop where recruitment of the essential cellular co-factor cyclin T1 occurs. Attempting to extend the peptide to form more interactions with the RNA loop, we examined a library of longer peptides and achieved > 6-fold improvement in affinity. The structure of TAR bound to one of the extended peptides reveals that the peptide slides down the major groove of the RNA, relative to our design, in order to maintain critical interactions with TAR. These conserved contacts involve three amino acid side chains and identify critical interaction points required for potent and specific binding to TAR RNA. They constitute a template of essential interactions required for inhibition of this RNA.
机译:HIV Tat蛋白与其关联的转录激活反应RNA(TAR)之间相互作用的药理学破坏将产生对耐药性敏感度低的新型抗病毒药物,但发现具有足够药力以确保药物开发的配体的努力并未成功。我们之前已经描述了一个结构受限的发夹肽家族,该家族有效抑制HIV感染细胞中的病毒生长。抑制性复合物的核磁共振(NMR)结构表明,该肽与3-nt凸起和RNA发夹的上螺旋紧密接触,但是单个残基与顶环接触,在该顶环处募集了必需的细胞因子因子周期蛋白T1发生。尝试扩展肽以与RNA环形成更多的相互作用,我们检查了更长的肽文库,并实现了> 6倍的亲和力提高。相对于我们的设计,结合到其中一种延伸肽上的TAR的结构揭示了该肽沿RNA的主要凹槽滑行,以维持与TAR的关键相互作用。这些保守的接触涉及三个氨基酸侧链并确定有效和特异性结合TAR RNA所需的关键相互作用点。它们构成抑制该RNA所需的基本相互作用的模板。

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