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Utilizing Peptide Structures As Keys For Unlocking Challenging Targets

机译:利用肽结构作为解锁具有挑战性的目标的关键

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摘要

Three-dimensional structures of protein targets have proven to be extremely valuable for modern drug design and discovery. For cases where the structure of the protein is unattainable, such as G-protein coupled receptors (GPCRs), structural information on active ligands is still useful and helpful for deciphering the geometrical and chemical features of the active site. Peptides, constructed from easy-to-form amide backbones and featuring variable side-chains, have an inherent advantage in generating rapid quantitative structure-activity relationships (QSAR). Given the fact that peptides are natural ligands for many protein targets, structural investigation of a series of related peptides, typically carried out via nuclear magnetic resonance (NMR), can result in an accurate pharmacophore model. Such a model can be used for virtual screening, and to assist design of second-generation peptidomimetics with improved properties and design of non-peptidic leads. In this article, we will review examples in which a structural approach utilizing peptide ligands was employed to obtain a better understanding of the target active site. We will focus on cases where such information supplied guidance toward the discovery of small molecule ligands.
机译:蛋白质靶标的三维结构已被证明对于现代药物设计和发现非常有价值。对于无法获得蛋白质结构的情况(例如G蛋白偶联受体(GPCR)),关于活性配体的结构信息仍然有用并且有助于破译活性位点的几何和化学特征。由易于形成的酰胺主链构成并具有可变侧链的肽在产生快速定量构效关系(QSAR)方面具有固有优势。鉴于肽是许多蛋白质靶标的天然配体这一事实,通常通过核磁共振(NMR)进行的一系列相关肽的结构研究可以得出准确的药效团模型。这种模型可用于虚拟筛选,并有助于设计具有改进特性的第二代拟肽和非肽前导的设计。在本文中,我们将回顾一些实例,在这些实例中,采用了利用肽配体的结构方法来更好地了解目标活性位点。我们将重点研究此类信息为发现小分子配体提供指导的情况。

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