Våbenø Jon, Lejon Tore, Nielsen Carsten Uhd, Steffansen Bente, Chen Weiqing, Ouyang Hui, Borchardt Ronald T, Luthman Kristina
Department of Medicinal Chemistry, Institute of Pharmacy, University of Tromsø, N-9037 Tromsø, Norway.
J Med Chem. 2004 Feb 12;47(4):1060-9. doi: 10.1021/jm031022+.
A series of five Phe-Gly dipeptidomimetics containing different amide bond replacements have been synthesized in a facile way from the readily available unsaturated ketoester 1, and their affinities for the di-/tripeptide transporters hPEPT1 (Caco-2 cells) and rPEPT2 (SKPT cells) were tested. The compounds contained the amide bond isosteres ketomethylene (2a), (R)- and (S)-hydroxyethylidene (3a and 4a), and (R)- and (S)-hydroxyethylene (5a and 6a) to provide information on the conformational and stereochemical requirements for hPEPT1 and rPEPT2 affinity. The affinity studies showed that for rPEPT2 there is no significant difference in affinity between the ketomethylene isostere 2a and the natural substrate Phe-Gly (K(i) values of 18.8 and 14.6 microM, respectively). Also the affinities for hPEPT1 are in the same range (K(i) values of 0.40 and 0.20 mM, respectively). This corroborates earlier findings that the amide bond as such is not essential for binding to PEPTX, but the results also reveal possible differences in the binding of ketomethylene isosteres to hPEPT1 and rPEPT2. The trans-hydroxyethylidene and hydroxyethylene isosteres proved to be poor substrates for PEPTX. These results provide new information about the importance of flexibility and of the stereochemistry at the C(4)-position for this class of compounds. Furthermore, the intracellular uptake of 2a-4a in Caco-2 cells was investigated, showing a 3-fold reduction of the uptake of 2a in the presence of the competetive inhibitor Gly-Pro, indicating contribution from an active transport component. No active uptake of 3a and 4a was observed. Transepithelial transport studies also indicated active transport of 2a across Caco-2 monolayers.
已以简便的方式从易得的不饱和酮酯1合成了一系列五个含有不同酰胺键替代物的苯丙氨酸 - 甘氨酸二肽模拟物,并测试了它们对二肽/三肽转运蛋白hPEPT1(Caco - 2细胞)和rPEPT2(SKPT细胞)的亲和力。这些化合物含有酰胺键电子等排体酮亚甲基(2a)、(R)-和(S)-羟基亚乙基(3a和4a)以及(R)-和(S)-羟基亚乙烯基(5a和6a),以提供关于hPEPT1和rPEPT2亲和力的构象和立体化学要求的信息。亲和力研究表明,对于rPEPT2,酮亚甲基电子等排体2a与天然底物苯丙氨酸 - 甘氨酸之间的亲和力没有显著差异(K(i)值分别为18.8和14.6 microM)。对hPEPT1的亲和力也在相同范围内(K(i)值分别为0.40和0.20 mM)。这证实了早期的发现,即酰胺键本身对于与PEPTX结合不是必需的,但结果也揭示了酮亚甲基电子等排体与hPEPT1和rPEPT2结合可能存在差异。反式羟基亚乙基和羟基亚乙烯基电子等排体被证明是PEPTX的不良底物。这些结果提供了关于这类化合物在C(4)位的灵活性和立体化学重要性的新信息。此外,研究了Caco - 2细胞中2a - 4a的细胞内摄取,结果表明在竞争性抑制剂甘氨酸 - 脯氨酸存在下,2a的摄取减少了3倍,表明存在主动转运成分。未观察到3a和4a的主动摄取。跨上皮转运研究也表明2a可通过Caco - 2单层进行主动转运。