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首页> 外文期刊>Journal of Medicinal Chemistry >Structure-based drug design of a novel family of PPARgamma partial agonists: virtual screening, X-ray crystallography, and in vitro/in vivo biological activities.
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Structure-based drug design of a novel family of PPARgamma partial agonists: virtual screening, X-ray crystallography, and in vitro/in vivo biological activities.

机译:PPARgamma新型激动剂家族的基于结构的药物设计:虚拟筛选,X射线晶体学和体外/体内生物活性。

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Peroxisome proliferator-activated receptor gamma (PPARgamma) is well-known as the receptor of thiazolidinedione antidiabetic drugs. In this paper, we present a successful example of employing structure-based virtual screening, a method that combines shape-based database search with a docking study and analogue search, to discover a novel family of PPARgamma agonists based upon pyrazol-5-ylbenzenesulfonamide. Two analogues in the family show high affinity for, and specificity to, PPARgamma and act as partial agonists. They also demonstrate glucose-lowering efficacy in vivo. A structural biology study reveals that they both adopt a distinct binding mode and have no H-bonding interactions with PPARgamma. The absence of H-bonding interaction with the protein provides an explanation why both function as partial agonists since most full agonists form conserved H-bonds with the activation function helix (AF-2 helix) which, in turn, enhances the recruitment of coactivators. Moreover, the structural biology and computer docking studies reveal the specificity of the compounds for PPARgamma could be due to the restricted access to the binding pocket of other PPAR subtypes, i.e., PPARalpha and PPARdelta, and steric hindrance upon the ligand binding.
机译:过氧化物酶体增殖物激活受体γ(PPARgamma)是噻唑烷二酮类抗糖尿病药物的受体。在本文中,我们提供了一个成功的实例,该实例采用基于结构的虚拟筛选(一种将基于形状的数据库搜索与对接研究和类似搜索相结合的方法)来发现基于吡唑-5-基苯磺酰胺的新型PPARgamma激动剂家族。该家族中的两个类似物表现出对PPARγ的高度亲和力和特异性,并充当部分激动剂。他们还证明了体内降糖功效。一项结构生物学研究表明,它们都采用独特的结合模式,并且与PPARgamma没有H键相互作用。缺乏与蛋白质的H键相互作用,可以解释为什么两者都起部分激动剂的作用,因为大多数完全激动剂会形成带有激活功能螺旋(AF-2螺旋)的保守H键,从而增强了共激活剂的募集。此外,结构生物学和计算机对接研究表明,该化合物对PPARγ的特异性可能是由于其他PPAR亚型即PPARα和PPARδ的结合口袋的进入受限,以及配体结合时的空间位阻。

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