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N-甲基化环五丙氨酸肽的构象偏好和潜在模板

Conformational preference and potential templates of N-methylated cyclic pentaalanine peptides.

作者信息

Chatterjee Jayanta, Mierke Dale F, Kessler Horst

机构信息

Center for Integrated Protein Science at the Department Chemie, Lehrstuhl für Organische Chemie II, Technische Universität München, Lichtenbergstrasse 4, Garching, Germany.

出版信息

Chemistry. 2008;14(5):1508-17. doi: 10.1002/chem.200701029.

Abstract

Systematic N-methylation of all peptide bonds in the cyclic pentapeptide cyclo(-D-Ala-Ala(4)-) has been performed yielding 30 different N-methylated derivatives, of which only seven displayed a single conformation on the NMR time scale. The conformation of these differentially N-methylated peptides was recently reported by us (J. Am. Chem. Soc. 2006, 128, 15 164-15 172). Here we present the conformational characterization of nine additional N-methylated peptides from the previous library which are not homogeneous but exist as a mixture in which at least one conformation is preferred by over 80 %. The structures of these peptides are investigated employing various 2D-NMR techniques, distance geometry calculations and further refined by molecular dynamics simulations in explicit DMSO. The comparison of the conformation of these nine peptides and the seven conformationally homogeneous peptides allow us to draw conclusions regarding the influence of N-methylation on the peptide backbone of cyclic pentapeptide of the class cyclo(-D-Ala-Ala(4)-). Here we present the different conformational classes of the peptides arising from the definitive pattern of N-methylation which can eventually serve as templates for the design of bioactive peptides.

摘要

已对环五肽环(-D-丙氨酸-丙氨酸(4)-)中的所有肽键进行了系统性N-甲基化,得到30种不同的N-甲基化衍生物,其中只有7种在核磁共振时间尺度上呈现单一构象。我们最近报道了这些差异N-甲基化肽的构象(《美国化学会志》2006年,128卷,15164 - 15172页)。在此,我们展示了来自先前文库的另外9种N-甲基化肽的构象特征,这些肽并非均一的,而是以混合物形式存在,其中至少有一种构象占比超过80%。采用各种二维核磁共振技术、距离几何计算对这些肽的结构进行了研究,并在明确的二甲基亚砜中通过分子动力学模拟进一步优化。对这9种肽与7种构象均一的肽的构象进行比较,使我们能够得出关于N-甲基化对环(-D-丙氨酸-丙氨酸(4)-)类环五肽肽主链影响的结论。在此,我们展示了由确定的N-甲基化模式产生的肽的不同构象类别,这些类别最终可作为生物活性肽设计的模板。

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