Besser D, Müller B, Agricola I, Reissmann S
Institut für Biochemie und Biophysik, Friedrich-Schiller-Universität Jena, Germany.
J Pept Sci. 2000 Mar;6(3):130-8. doi: 10.1002/(SICI)1099-1387(200003)6:3<130::AID-PSC237>3.0.CO;2-D.
Backbone cyclization has become an important method for generating or stabilizing the bioactive conformation of peptides without affecting the amino acid side-chains. Up to now, backbone cyclic peptides were mostly synthesized with bridges between N-amino- and N-carboxy-functionalized peptide bonds. To study the influence of a more flexible backbone on the biological activity, we have developed a new type of backbone cyclization which is achieved via the N-functionalized moieties of acylated reduced peptide bonds. As described in our previous publications, the formation of N-functionalized dipeptide units facilitates the peptide assembly compared with the incorporation of N-alkyl amino acids. Besides the racemization-free synthesis of Fmoc-protected pseudodipeptide esters with reduced peptide bonds, the new type of backbone modification allows the use of a great variety of omega-amino- and alpha,omega-dicarboxylic acids differing in chain length and chemical properties. Best results for the coupling of the omega-amino- and alpha,omega-dicarboxylic acids to the reduced peptide bond were obtained by the formation of mixed anhydrides with alkyl chloroformates. Whereas the protecting group combination of Z/OBzl in the dipeptide unit and Boc/OtBu for the N-functionalized moiety leads to the formation of 2-ketopiperazine during hydrogenation, the combination of Fmoc/OtBu and Alloc/OAll is very suitable for the synthesis of backbone cyclic peptides on solid support.
主链环化已成为一种在不影响氨基酸侧链的情况下生成或稳定肽生物活性构象的重要方法。到目前为止,主链环肽大多是通过N-氨基和N-羧基功能化肽键之间的桥连来合成的。为了研究更灵活的主链对生物活性的影响,我们开发了一种新型的主链环化方法,该方法通过酰化还原肽键的N-功能化部分来实现。正如我们之前的出版物中所描述的,与引入N-烷基氨基酸相比,N-功能化二肽单元的形成促进了肽的组装。除了无消旋合成具有还原肽键的Fmoc保护的假二肽酯外,这种新型的主链修饰还允许使用各种链长和化学性质不同的ω-氨基和α,ω-二羧酸。通过与氯甲酸烷基酯形成混合酸酐,可获得ω-氨基和α,ω-二羧酸与还原肽键偶联的最佳结果。虽然二肽单元中的Z/OBzl保护基组合和N-功能化部分的Boc/OtBu在氢化过程中会导致2-酮哌嗪的形成,但Fmoc/OtBu和Alloc/OAll的组合非常适合在固相载体上合成主链环肽。