Gao J, Winslow S L, Vander Velde D, Aubé J, Borchardt R T
Department of Pharmaceutical Chemistry, School of Pharmacy, The University of Kansas, Lawrence 66047, USA.
J Pept Res. 2001 May;57(5):361-73. doi: 10.1034/j.1399-3011.2001.00830.x.
Peptide bond bioisosteres, such as hydroxyethylamine (Hea), have frequently been used to stabilize metabolically labile peptide bonds in peptidomimetic drug design in an effort to increase the oral bioavailability of drug candidates. However, the impact of the peptide bond bioisosteres on the cell permeation characteristics of peptidomimetics is not well understood, particularly with respect to the effects on the substrate activity for proteins that can restrict (e.g. P-glycoprotein, P-gp) or facilitate (e.g. the oligopeptide transporter, OPT) intestinal mucosal permeation of peptidomimetics. In this study, terminally free and terminally modified (N-acetylated and C-amidated) peptidomimetics of H-Ala-Phe-OH and H-Ala-Phe-Ala-OH with the Ala-Phe peptide bonds replaced by Hea bioisosteres were synthesized. Transport characteristics of these peptidomimetics were investigated using Caco-2 cell monolayers as an in vitro model of the intestinal mucosa. The study showed that the Hea bioisostere stabilized the peptidomimetics to protease metabolism in Caco-2 cells. All terminally free peptidomimetics showed significant affinity and substrate activity for OPT. The affinity and substrate activity for OPT were stereoselective for peptidomimetics containing an S,S-configuration for the two adjacent chiral centers related to the Hea bioisostere. Three of the four terminally modified peptidomimetics showed significant substrate activity for P-gp and, interestingly, the substrate activity for P-gp was also stereoselective; however, it was in favor of an R,R-configuration for the two adjacent chiral centers related to the Hea bioisostere.
肽键生物电子等排体,如羟乙胺(Hea),在拟肽药物设计中经常被用于稳定代谢不稳定的肽键,以提高候选药物的口服生物利用度。然而,肽键生物电子等排体对拟肽细胞渗透特性的影响尚未得到充分了解,特别是对那些能够限制(如P-糖蛋白,P-gp)或促进(如寡肽转运体,OPT)拟肽肠道黏膜渗透的蛋白质底物活性的影响。在本研究中,合成了H-Ala-Phe-OH和H-Ala-Phe-Ala-OH的末端游离及末端修饰(N-乙酰化和C-酰胺化)的拟肽,其中Ala-Phe肽键被Hea生物电子等排体取代。使用Caco-2细胞单层作为肠道黏膜的体外模型,研究了这些拟肽的转运特性。研究表明,Hea生物电子等排体使拟肽在Caco-2细胞中对蛋白酶代谢具有稳定性。所有末端游离的拟肽对OPT均表现出显著的亲和力和底物活性。对于与Hea生物电子等排体相关的两个相邻手性中心具有S,S-构型的拟肽,其对OPT的亲和力和底物活性具有立体选择性。四个末端修饰的拟肽中有三个对P-gp表现出显著的底物活性,有趣的是,对P-gp的底物活性也具有立体选择性;然而,它有利于与Hea生物电子等排体相关的两个相邻手性中心具有R,R-构型。