Choi Sung-ju, Kwon Soo hyun, Kim Tae-Hyun, Lim Yong-beom
Translational Research Center for Protein Function Control and Department of Materials Science & Engineering, Yonsei University, Seoul, 120-749, Korea.
Biopolymers. 2014 Mar;101(3):279-86. doi: 10.1002/bip.22356.
Macrocycles are interesting molecules because their topological features and constrained properties significantly affect their chemical, physical, biological, and self-assembling properties. In this report, we synthesized unique macrocyclic peptides composed of both an α-helix and a polyproline segment and analyzed their conformational properties. We found that the molecular stiffness of the rod-like polyproline segment and the relative orientation of the two different helical segments strongly affect the efficiency of the macrocyclization reaction. Conformational analyses showed that both the α-helix and the polyproline II helix coexisted within the macrocyclic peptides and that the polyproline segment exerts significant effect on the overall helical stability and conformation of the α-helical segment.
大环化合物是有趣的分子,因为它们的拓扑特征和受限性质会显著影响其化学、物理、生物和自组装性质。在本报告中,我们合成了由α-螺旋和聚脯氨酸片段组成的独特大环肽,并分析了它们的构象性质。我们发现,棒状聚脯氨酸片段的分子刚性以及两个不同螺旋片段的相对取向强烈影响大环化反应的效率。构象分析表明,α-螺旋和聚脯氨酸II螺旋在大环肽中共存,并且聚脯氨酸片段对α-螺旋片段的整体螺旋稳定性和构象有显著影响。