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首页> 外文期刊>Journal of Medicinal Chemistry >Design of Thioether Cyclic Peptide Scaffolds with Passive Permeability and Oral Exposure
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Design of Thioether Cyclic Peptide Scaffolds with Passive Permeability and Oral Exposure

机译:具有无源渗透性和口腔暴露的硫醚环状肽支架设计

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Advances in the design of permeable peptides and in the synthesis of large arrays of macrocyclic peptides with diverse amino acids have evolved on parallel but independent tracks. Less precedent combines their respective attributes, thereby limiting the potential to identify permeable peptide ligands for key targets. Herein, we present novel 6-, 7-, and 8-mer cyclic peptides (MW 774-1076 g center dot mol(-1)) with passive permeability and oral exposure that feature the amino acids and thioether ring-closing common to large array formats, including DNA- and RNA-templated synthesis. Each oral peptide herein, selected from virtual libraries of partially N-methylated peptides using in silico methods, reflects the subset consistent with low energy conformations, low desolvation penalties, and passive permeability. We envision that, by retaining the backbone N-methylation pattern and consequent bias toward permeability, one can generate large peptide arrays with sufficient side chain diversity to identify permeability-biased ligands to a variety of protein targets.
机译:渗透性肽的设计和含有多种氨基酸的大环肽的合成在平行但独立的轨道上取得了进展。较少的先例结合了它们各自的属性,从而限制了识别关键靶点的渗透性肽配体的潜力。在此,我们提出了新型6、7和8-聚体环肽(MW 774-1076 g中心点摩尔(-1)),具有被动通透性和口服暴露,其特征是氨基酸和硫醚环与大阵列格式(包括DNA和RNA模板合成)相同。本文中的每一种口服肽都是从部分N-甲基化肽的虚拟库中选择的,使用电子方法,反映了与低能构象、低去溶剂惩罚和被动通透性一致的子集。我们设想,通过保留主干N-甲基化模式和随之产生的通透性偏向,可以生成具有足够侧链多样性的大型肽阵列,以识别针对各种蛋白质靶点的通透性偏向配体。

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