Sasubilli Ramakrishna, Gutheil William G
Division of Pharmaceutical Sciences, School of Pharmacy, University of Missouri-Kansas City, Kansas City, Missouri 64110, USA.
J Comb Chem. 2004 Nov-Dec;6(6):911-5. doi: 10.1021/cc049912d.
Peptide mimetics are of considerable interest as bioactive agents and drugs. C-terminally modified peptide mimetics are of particular interest given the synthetic versatility of the carboxyl group and its derivatives. A general approach to C-terminally modified peptide mimetics, based on a urethane attachment strategy and amino acid t-butyl ester-based N-to-C peptide synthesis, is described. This approach is compatible with the reaction conditions generally employed for solution-phase peptide mimetic synthesis. To develop and demonstrate this approach, it was employed for the solid-phase synthesis of peptide trifluoromethyl ketones, peptide boronic acids, and peptide hydroxamic acids. The development of a versatile general approach to C-terminally modified peptides using readily available starting materials provides a basis for the combinatorial and parallel solid-phase synthesis of these peptide mimetic classes for bioactive agent screening and also provides a basis for the further development of solid-phase C-terminal functional group elaboration strategies.
肽模拟物作为生物活性剂和药物备受关注。鉴于羧基及其衍生物的合成多功能性,C端修饰的肽模拟物尤其令人感兴趣。本文描述了一种基于氨基甲酸酯连接策略和基于氨基酸叔丁酯的N到C肽合成的C端修饰肽模拟物的通用方法。该方法与通常用于溶液相肽模拟物合成的反应条件兼容。为了开发和证明这种方法,将其用于肽三氟甲基酮、肽硼酸和肽异羟肟酸的固相合成。使用易得的起始材料开发一种通用的C端修饰肽的通用方法,为这些肽模拟物类别的组合和平行固相合成以进行生物活性剂筛选提供了基础,也为固相C端官能团精细修饰策略的进一步发展提供了基础。