Marelli Udaya Kiran, Ovadia Oded, Frank Andreas Oliver, Chatterjee Jayanta, Gilon Chaim, Hoffman Amnon, Kessler Horst
Institute for Advanced Study (IAS) and, Center for Integrated Protein Science (CIPSM), Department Chemie, Technische Universität München, 85747 Garching (Germany).
Institute for Drug Research, School of Pharmacy, Faculty of Medicine, The Hebrew University of Jerusalem, Jerusalem, 91120 (Israel).
Chemistry. 2015 Oct 19;21(43):15148-52. doi: 10.1002/chem.201501600. Epub 2015 Sep 4.
Recent structural studies on libraries of cyclic hexapeptides led to the identification of common backbone conformations that may be instrumental to the oral availability of peptides. Furthermore, the observation of differential Caco-2 permeabilities of enantiomeric pairs of some of these peptides strongly supports the concept of conformational specificity driven uptake and also suggests a pivotal role of carrier-mediated pathways for peptide transport, especially for scaffolds of polar nature. This work presents investigations on the Caco-2 and PAMPA permeability profiles of 13 selected N-methylated cyclic pentaalanine peptides derived from the basic cyclo(-D-Ala-Ala4 -) template. These molecules generally showed moderate to low transport in intestinal epithelia with a few of them exhibiting a Caco-2 permeability equal to or slightly higher than that of mannitol, a marker for paracellular permeability. We identified that the majority of the permeable cyclic penta- and hexapeptides possess an N-methylated cis-peptide bond, a structural feature that is also present in the orally available peptides cyclosporine A and the tri-N-methylated analogue of the Veber-Hirschmann peptide. Based on these observations it appears that the presence of N-methylated cis-peptide bonds at certain locations may promote the intestinal permeability of peptides through a suitable conformational preorganization.
近期对环六肽文库的结构研究,使得能够鉴定出可能有助于肽口服吸收的常见主链构象。此外,观察到其中一些肽的对映体对在Caco-2细胞中的通透性存在差异,这有力地支持了构象特异性驱动吸收的概念,也表明载体介导的肽转运途径起着关键作用,特别是对于具有极性性质的支架而言。本文介绍了对13种选自基于基本环(-D-丙氨酸-丙氨酸4 -)模板的N-甲基化环五丙氨酸肽的Caco-2细胞和PAMPA通透性的研究。这些分子在肠上皮细胞中的转运通常表现为中等至低水平,其中少数分子的Caco-2通透性等于或略高于甘露醇(一种细胞旁通透性标志物)。我们发现,大多数可通透的环五肽和环六肽都具有N-甲基化的顺式肽键,环孢素A和Veber-Hirschmann肽的三-N-甲基化类似物等口服可用肽中也存在这一结构特征。基于这些观察结果,在某些位置存在N-甲基化的顺式肽键似乎可以通过合适的构象预组织促进肽的肠道通透性。