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How to Computationally Stack the Deck for Hit-to-Lead Generation: In Silico Molecular Interaction Energy Profiling for de Novo siRNA Guide Strand Surrogate Selection

机译:如何计算地堆叠甲板以获取击球发电:在硅分子交互能量分析中为De Novo siRNA引导链替代选择

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The Argonaute-2 protein is part of the RNA-induced silencing complex (RISC) and anchors the guide strand of the small interfering RNA (siRNA). The 3'-end of the RNA contains two unpaired nucleotides (3'-overhang) that interact with the PAZ (PIWI/Argonaute/Zwille) domain of the protein. Theoretical and experimental evidence points toward a direct connection between the PAZ/3'-overhang binding affinity and siRNA's potency and specificity. Among the challenges to overcome when deploying siRNA molecules as therapeutics are their ready degradation under physiological conditions and off-target effects. It has been demonstrated that nuclease resistance can be improved via replacement of the dinucleotide overhang by small molecules which retain the interactions of the RNA guide strand with the PAZ domain. Most commonly, nucleotide analogues are used to substitute the siRNA overhang. However, in this study we adopt a de novo approach to its modification. The X-ray structure of human Argonaute-2 PAZ domain served to perform virtual screening and molecular interaction energy profiling (i.e., decomposition of the force field calculated protein-ligand interaction energies) of tailored-to-purpose fragment libraries. The binding of fragments to the PAZ domain was validated experimentally by NMR spectroscopy. The in silico guided protocol led to the efficient discovery of a number of PAZ domain ligands with affinities comparable to that of a reference dinucleotide (UpU, K-d = 33 mu M). Originally starting from a generic fragment library, hits progress from 930 mu M down to 14 mu M within three iterations for the fragments selected via in silico molecular interaction energy profiling from a bespoke library. These dinucleotide siRNA guide strand surrogates represent potential new siRNA-based therapeutics (when attached to siRNA to form bioconjugates) featuring improved efficacy, specificity, stability, and cellular uptake. This project yielded a portfolio of seven patent applications
机译:Argonaute-2蛋白是RNA诱导的沉默复合物(RISC)的一部分,并且锚固小干扰RNA(siRNA)的引导股。 RNA的3'-末端含有两个未配对的核苷酸(3'-悬垂)与PAZ(PIWI / Argonaute / Zwille)蛋白质相互作用。理论和实验证据指向PAZ / 3'-overhang结合亲和力和siRNA效力和特异性之间的直接连接。在将siRNA分子作为治疗剂展开时克服的挑战是它们在生理条件和偏移效应下的成熟降解。已经证明,通过通过将RNA引导股相互作用与PAZ结构域的小分子替换二核苷酸突出,可以通过替换二核苷酸突出来改善核酸酶抗性。最常见的是,核苷酸类似物用于将siRNA悬垂替换。但是,在这项研究中,我们采用了德国的修改方法。人体Argonaute-2 PAZ结构域的X射线结构用于进行定制对目的片段文库的虚拟筛选和分子相互作用能量分析(即,抗蛋白 - 配体相互作用能量的分解。通过NMR光谱通过NMR光谱通过NMR光谱验证片段对PAZ结构域的结合。 Silico引导方案导致有效发现许多PAZ结构域配体,其具有与参考二核苷酸(UPU,K-D =33μm)相当的亲和力。最初从通用片段库开始,在三个迭代范围内从930 mu m下降到14 mu m,用于从定制库中的硅分子交互能量分析中选择的片段。这些二核苷酸siRNA引导链替代代表代表潜在的新siRNA的治疗方法(当附着在siRNA中形成生物缀合物时)具有改善的疗效,特异性,稳定性和细胞摄取。该项目产生了七种专利申请的投资组合

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