Protein Chemistry, Biogen Idec Hemophilia, Waltham, MA 02451, USA.
Bioorg Med Chem Lett. 2011 Aug 1;21(15):4597-601. doi: 10.1016/j.bmcl.2011.05.108. Epub 2011 Jun 6.
The rationale for targeting the human di-/tripeptide transporter hPEPT1 for oral drug delivery has been well established by several drug and prodrug cases. The aim of this study was to synthesize novel ketomethylene modified tripeptidomimetics and to investigate their binding affinity for hPEPT1. Three related tripeptidomimetics of the structure H-Phe-ψ[COCH(2)]-Ser(Bz)-X(aa)-OH were synthesized applying the tandem chain extension aldol reaction, where amino acid derived β-keto imides were stereoselectively converted to α-substituted γ-keto imides. In addition, three corresponding tripeptides, composed of amide bonds, were synthesized for comparison of binding affinities. The six investigated compounds were all defined as high affinity ligands (K(i)-values <0.5 mM) for hPEPT1 by measuring the concentration dependent inhibition of apical [(14)C]Gly-Sar uptake in Caco-2 cells. Consequently, the ketomethylene replacement for the natural amide bond and α-side chain modifications appears to offer a promising strategy to modify tripeptidic structures while maintaining a high affinity for hPEPT1.
靶向人二肽/三肽转运蛋白 hPEPT1 用于口服药物递送的原理已通过多个药物和前药案例得到充分证实。本研究的目的是合成新型酮亚甲基修饰的三肽类似物,并研究它们与 hPEPT1 的结合亲和力。采用串联链延伸 aldol 反应合成了结构为 H-Phe-ψ[COCH(2)]-Ser(Bz)-X(aa)-OH 的三种相关三肽类似物,其中氨基酸衍生的β-酮亚胺立体选择性地转化为α-取代的γ-酮亚胺。此外,还合成了三种相应的三肽,组成酰胺键,用于比较结合亲和力。通过测量 Caco-2 细胞中顶部分泌 [(14)C]Gly-Sar 摄取的浓度依赖性抑制作用,发现这六种研究化合物均被定义为 hPEPT1 的高亲和力配体(K(i)-值<0.5 mM)。因此,酮亚甲基替代天然酰胺键和α侧链修饰似乎为修饰三肽结构提供了一种很有前途的策略,同时保持对 hPEPT1 的高亲和力。