Mizuma Takashi, Narasaka Takuo, Awazu Shoji
Department of Biopharmaceutics and Drug Rational Research Center, School of Pharmacy, Tokyo University of Pharmacy and Life Science (TUPLS), Hachioji, Japan.
J Pharm Pharmacol. 2002 Sep;54(9):1293-6. doi: 10.1211/002235702320402152.
Uptake of cyclic dipeptides by H+/oligopeptide cotransporter (PEPT1) was studied in monolayers of the human intestinal cell line, Caco-2. The cyclic dipeptides studied were cyclic glycylphenylalanine (cyclo(Gly-Phe)), cyclic phenylalanylserine (cyclo(Phe-Ser)), cyclic seryltyrosine (cyclo(Ser-Tyr)) and cyclic glycyltyrosine (cyclo(Gly-Tyr)). These molecules have both peptide bonds and aromatic rings, and are similar in structure to cephalexin and cephadroxil, which are transported by PEPT1. Cellular uptake of these cyclic dipeptides was pH dependent, and was inhibited by the addition of PEPT1 substrates such as glycylsarcosine, indicating PEPT1-mediated transport. Michaelis constants (Km) for these cyclic dipeptides were cyclo(Ser-Tyr) < cyclo(Phe-Ser), and cyclo(Gly-Tyr) < cyclo(Gly-Phe), indicating that tyrosine possessing phenol moiety has higher affinity for PEPT1 than phenylalanine possessing benzen moiety. The Km for cephadroxil possessing phenol moiety was reportedly lower than that for cephalexin possessing benzen moiety. Therefore, it was concluded that the phenolic hydroxyl group of the substrate may enhance affinity for PEPT1.
在人肠细胞系Caco - 2的单层细胞中研究了H⁺/寡肽共转运体(PEPT1)对环二肽的摄取。所研究的环二肽有环甘氨酰苯丙氨酸(环(甘 - 苯丙))、环苯丙氨酰丝氨酸(环(苯丙 - 丝))、环丝氨酰酪氨酸(环(丝 - 酪))和环甘氨酰酪氨酸(环(甘 - 酪))。这些分子既有肽键又有芳香环,并且在结构上与由PEPT1转运的头孢氨苄和头孢羟氨苄相似。这些环二肽的细胞摄取是pH依赖性的,并且通过添加PEPT1底物如甘氨酰肌氨酸而受到抑制,表明是由PEPT1介导的转运。这些环二肽的米氏常数(Km)为环(丝 - 酪)<环(苯丙 - 丝),环(甘 - 酪)<环(甘 - 苯丙),这表明具有酚基的酪氨酸对PEPT1的亲和力高于具有苯环的苯丙氨酸。据报道,具有酚基的头孢羟氨苄的Km低于具有苯环的头孢氨苄的Km。因此,得出结论:底物的酚羟基可能增强对PEPT1的亲和力。