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An In Silico Insight into Novel Therapeutic Interaction of LTNF Peptide-LT10 and Design of Structure Based Peptidomimetics for Putative Anti-Diabetic Activity

机译:LTNF肽-LT10的新型治疗相互作用的计算机模拟研究以及推定的抗糖尿病活性的基于结构的拟肽设计

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摘要

Lethal Toxin Neutralizing Factor (LTNF) obtained from Opossum serum (Didephis virginiana) is known to exhibit toxin-neutralizing activity for envenomation caused by animals, plants and bacteria. Small synthetic peptide- LT10 (10mer) derived from N-terminal fraction of LTNF exhibit similar anti-lethal and anti-allergic property. In our in silico study, we identified Insulin Degrading Enzyme (IDE) as a potential target of LT10 peptide followed by molecular docking and molecular dynamic (MD) simulation studies which revealed relatively stable interaction of LT10 peptide with IDE. Moreover, their detailed interaction analyses dictate IDE-inhibitory interactions of LT10 peptide. This prediction ofLT10 peptide as a novel putative IDE-inhibitor suggests its possible role in anti-diabetic treatment since IDE- inhibitors are known to assist treatment of Diabetes mellitus by enhancing insulin signalling. Furthermore, series of structure based peptidomimetics were designed from LT10 peptide and screened for their inhibitory interactions which ultimately led to a small set of peptidomimetic inhibitors of IDE. These peptidomimetic thus might provide a new class of IDE-inhibitors, those derived from LT10 peptide.
机译:已知从负鼠血清(Didephis virginiana)获得的致死毒素中和因子(LTNF)对动物,植物和细菌引起的毒素具有毒素中和活性。源自LTNF N末端片段的小型合成肽LT10(10mer)具有相似的抗致命和抗过敏特性。在我们的计算机研究中,我们将胰岛素降解酶(IDE)确定为LT10肽的潜在靶标,随后进行了分子对接和分子动力学(MD)模拟研究,结果表明LT10肽与IDE的相互作用相对稳定。此外,他们详细的相互作用分析决定了LT10肽的IDE抑制性相互作用。对LT10肽作为新型推定的IDE抑制剂的这种预测表明了其在抗糖尿病治疗中的可能作用,因为已知IDE抑制剂可通过增强胰岛素信号来辅助糖尿病的治疗。此外,从LT10肽设计了一系列基于结构的拟肽,并筛选了它们的抑制性相互作用,最终导致了少量的IDE拟肽抑制剂。因此,这些拟肽可能会提供一类新的IDE抑制剂,即那些源自LT10肽的抑制剂。

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