Linde Yaniv, Ovadia Oded, Safrai Eli, Xiang Zhimin, Portillo Federico P, Shalev Deborah E, Haskell-Luevano Carrie, Hoffman Amnon, Gilon Chaim
Institute of Chemistry, Safra Campus, Givat Ram, The Hebrew University of Jerusalem, Jerusalem 91904, Israel.
Biopolymers. 2008;90(5):671-82. doi: 10.1002/bip.21057.
Backbone cyclization (BC) and N-methylation have been shown to enhance the activity and/or selectivity of biologically active peptides and improve metabolic stability and intestinal permeability. In this study, we describe the synthesis, structure-activity relationship (SAR) and intestinal metabolic stability of a backbone cyclic peptide library, BL3020, based on the linear alpha-Melanocyte stimulating hormone analog Phe-D-Phe-Arg-Trp-Gly. The drug lead, BL3020-1, selected from the BL3020 library (compound 1) has been shown to inhibit weight gain in mice following oral administration. Another member of the BL3020 library, BL3020-17, showed improved biological activity towards the mMC4R, in comparison to BL3020-1, although neither were selective for MC4R or MC5R. N-methylation, which restrains conformational freedom while increasing metabolic stability beyond that which is imparted by BC, was used to find analogs with increased selectivity. N-methylated backbone cyclic libraries were synthesized based on the BL3020 library. SAR studies showed that all the N-methylated backbone cyclic peptides demonstrated reduced biological activity and selectivity for all the analyzed receptors. N-methylation of active backbone cyclic peptides destabilized the active conformation or stabilized an inactive conformation, rendering the peptides biologically inactive. N-methylation of backbone cyclic peptides maintained stability to degradation by intestinal enzymes.
主链环化(BC)和N-甲基化已被证明可增强生物活性肽的活性和/或选择性,并改善其代谢稳定性和肠道通透性。在本研究中,我们描述了基于线性α-黑素细胞刺激激素类似物Phe-D-Phe-Arg-Trp-Gly的主链环肽文库BL3020的合成、构效关系(SAR)和肠道代谢稳定性。从BL3020文库(化合物1)中筛选出的先导药物BL3020-1已被证明口服给药后可抑制小鼠体重增加。与BL3020-1相比,BL3020文库的另一个成员BL3020-17对mMC4R表现出更高的生物活性,尽管两者对MC4R或MC5R均无选择性。N-甲基化在限制构象自由度的同时增加了代谢稳定性,超过了BC所赋予的稳定性,被用于寻找具有更高选择性的类似物。基于BL3020文库合成了N-甲基化主链环肽文库。SAR研究表明,所有N-甲基化主链环肽对所有分析的受体均表现出降低的生物活性和选择性。活性主链环肽的N-甲基化使活性构象不稳定或使非活性构象稳定,导致肽失去生物活性。主链环肽的N-甲基化保持了对肠道酶降解的稳定性。