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Prospecting for Novel Plant-Derived Molecules of Rauvolfia serpentina as Inhibitors of Aldose Reductase a Potent Drug Target for Diabetes and Its Complications

机译:新型蛇纹藻的植物来源分子作为醛糖还原酶的抑制剂的探索醛糖还原酶是糖尿病及其并发症的有效药物靶标

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摘要

Aldose Reductase (AR) is implicated in the development of secondary complications of diabetes, providing an interesting target for therapeutic intervention. Extracts of Rauvolfia serpentina, a medicinal plant endemic to the Himalayan mountain range, have been known to be effective in alleviating diabetes and its complications. In this study, we aim to prospect for novel plant-derived inhibitors from R. serpentina and to understand structural basis of their interactions. An extensive library of R. serpentina molecules was compiled and computationally screened for inhibitory action against AR. The stability of complexes, with docked leads, was verified using molecular dynamics simulations. Two structurally distinct plant-derived leads were identified as inhibitors: indobine and indobinine. Further, using these two leads as templates, 16 more leads were identified through ligand-based screening of their structural analogs, from a small molecules database. Thus, we obtained plant-derived indole alkaloids, and their structural analogs, as potential AR inhibitors from a manually curated dataset of R. serpentina molecules. Indole alkaloids reported herein, as a novel structural class unreported hitherto, may provide better insights for designing potential AR inhibitors with improved efficacy and fewer side effects.
机译:醛糖还原酶(AR)与糖尿病继发性并发症的发生有关,为治疗干预提供了有趣的靶标。已知喜马拉雅山脉特有的药用植物蛇形藻提取物可有效缓解糖尿病及其并发症。在这项研究中,我们的目的是从蛇毒中发现新型植物源抑制剂,并了解其相互作用的结构基础。编译了蛇形弯曲杆菌分子的广泛文库,并通过计算筛选了针对AR的抑制作用。使用分子动力学模拟验证了具有对接引线的配合物的稳定性。确定了两种在结构上不同的植物来源的前导物:吲哚比因和吲哚比宁。此外,使用这两个线索作为模板,从小分子数据库中通过基于配体的结构类似物筛选确定了16个以上的线索。因此,我们从人工编排的蛇纹螺旋体分子数据集中获得了植物来源的吲哚生物碱及其结构类似物,作为潜在的AR抑制剂。本文报道的吲哚生物碱作为迄今未报道的新型结构类别,可为设计具有改进的功效和较少副作用的潜在AR抑制剂提供更好的见解。

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