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Anthranilic Acid-containing Cyclic Tetrapeptides: At The Crossroads Of Conformational Rigidity And Synthetic Accessibility

机译:含邻氨基苯甲酸的环状四肽:处于构象刚性和合成可及性的十字路口

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摘要

Each amino acid in a peptide contributes three atom units to main-chains, hence natural cyclic peptides can be 9, 12, 15, …. ie 3n membered-rings, where n is the number of amino acids. Cyclic peptides that are 9 or 12-membered ring compounds tend to be hard to prepare because of strain, while their one amino acid homologs (15-membered cyclic pentapeptides) are not conformationally homogeneous unless constrained by strategically placed proline or D-amino acid residues. We hypothesized that replacing one genetically encoded amino acid in a cyclic tetrapeptide with a rigid β-amino acid would render peptidomimetic designs that rest at a useful crossroads between synthetic accessibility and conformational rigidity. Thus this research explored non-proline containing 13-membered ring peptides >1 featuring one anthranilic acid (Anth) residue. Twelve cyclic peptides of this type were prepared, and in doing so the viability of both solution- and solid-phase methods was demonstrated. The library produced contained a complete set of four diastereoisomers of the sequence >1aaf (ie cyclo-AlaAlaPheAnth). Without exception, these four diastereoisomers each adopted one predominant conformation in solution; basically these conformations feature amide N-H vectors puckering above and below the equatorial plane, and approximately oriented their N-H atoms towards the polar axis. Moreover, the shapes of these conformers varied in a logical and predictable way (NOE, temperature coefficient, D/H exchange, circular dichroism). Comparisons were made of the side-chain orientations presented by compounds >1aaa in solution with ideal secondary structures and protein-protein interaction interfaces. Various >1aaa stereoisomers in solution present side-chains in similar orientations to regular and inverse γ-turns, and to the most common β-turns (types I and II). Consistent with this, compounds >1aaa have a tendency to mimic various turns and bends at protein-protein interfaces. Finally, proteolytic- and hydrolytic stabilities of the compounds at different pHs indicate they are robust relative to related linear peptides, and rates of permeability through an artificial membrane indicate their structures are conducive to cell permeability.
机译:肽中的每个氨基酸在主链上贡献三个原子单元,因此天然环肽可以是9、12、15等。即3n元环,其中n是氨基酸数。 9或12元环化合物的环肽由于应变而往往难以制备,而它们的一个氨基酸同源物(15元环五肽)在构象上不是均质的,除非受到策略性放置的脯氨酸或D-氨基酸残基的限制。我们假设用刚性β-氨基酸取代环状四肽中的一种遗传编码氨基酸将使拟肽设计处于合成可及性和构象刚性之间的有用十字路口。因此,这项研究探索了不含脯氨酸的具有一个邻氨基苯甲酸(Anth)残基的13元环肽> 1 。制备了这种类型的十二个环状肽,并以此证明了固相和固相方法的可行性。产生的文库包含完整的四个> 1aaf 序列的非对映异构体(即环-AlaAlaPheAnth)。无一例外,这四种非对映异构体各自在溶液中采用一种主要的构象。基本上,这些构象的特征是酰胺N-H载体在赤道平面的上方和下方折叠,并使它们的N-H原子大致朝向极轴。而且,这些构象异构体的形状以逻辑和可预测的方式变化(NOE,温度系数,D / H交换,圆二色性)。比较了化合物> 1aaa 在溶液中具有理想二级结构和蛋白质-蛋白质相互作用界面的侧链取向。溶液中的各种> 1aaa 立体异构体均以与正和反向γ转向以及最常见的β转向(I型和II型)相似的方向呈现侧链。与此相一致,化合物> 1aaa 倾向于模仿蛋白质-蛋白质界面的各种转弯和弯曲。最后,化合物在不同pH值下的蛋白水解和水解稳定性表明它们相对于相关的线性肽具有较强的稳定性,并且通过人工膜的通透性速率表明其结构有助于细胞通透性。

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  • 作者

    Dongyue Xin; Kevin Burgess;

  • 作者单位
  • 年(卷),期 -1(14),22
  • 年度 -1
  • 页码 5049–5058
  • 总页数 27
  • 原文格式 PDF
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