Ettmayer P, France D, Gounarides J, Jarosinski M, Martin M S, Rondeau J M, Sabio M, Topiol S, Weidmann B, Zurini M, Bair K W
Novartis Forschungsinstitut, Brunnerstrasse 59, Vienna A-1235, Austria.
J Med Chem. 1999 Mar 25;42(6):971-80. doi: 10.1021/jm9811007.
Following earlier work on cystine-bridged peptides, cyclic phosphopeptides containing nonreducible mimics of cystine were synthesized that show high affinity and specificity toward the Src homology (SH2) domain of the growth factor receptor-binding protein (Grb2). Replacement of the cystine in the cyclic heptapeptide cyclo(CYVNVPC) by D-alpha-acetylthialysine or D-alpha-lysine gave cyclo(YVNVP(D-alpha-acetyl-thiaK)) (22) and cyclo(YVNVP(D-alpha-acetyl-K)) (30), which showed improved binding 10-fold relative to that of the control peptide KPFYVNVEF (1). NMR spectroscopy and molecular modeling experiments indicate that a beta-turn conformation centered around YVNV is essential for high-affinity binding. X-ray structure analyses show that the linear peptide 1 and the cyclic compound 21 adopt a similar binding mode with a beta-turn conformation. Our data confirm the unique structural requirements of the ligand binding site of the SH2 domain of Grb2. Moreover, the potency of our cyclic lactams can be explained by the stabilization of the beta-turn conformation by three intramolecular hydrogen bonds (one mediated by an H2O molecule). These stable and easily accessible cyclic peptides can serve as templates for the evaluation of phosphotyrosine surrogates and further chemical elaboration.
继早期关于胱氨酸桥连肽的研究工作之后,合成了含有胱氨酸非还原模拟物的环磷肽,这些环磷肽对生长因子受体结合蛋白(Grb2)的Src同源(SH2)结构域表现出高亲和力和特异性。用D-α-乙酰硫代赖氨酸或D-α-赖氨酸取代环七肽环(CYVNVPC)中的胱氨酸,得到环(YVNVP(D-α-乙酰硫代K))(22)和环(YVNVP(D-α-乙酰-K))(30),它们相对于对照肽KPFYVNVEF(1)的结合能力提高了10倍。核磁共振光谱和分子模拟实验表明,以YVNV为中心的β-转角构象对于高亲和力结合至关重要。X射线结构分析表明,线性肽1和环状化合物21采用类似的结合模式,具有β-转角构象。我们的数据证实了Grb2的SH2结构域配体结合位点的独特结构要求。此外,我们的环内酰胺的效力可以通过三个分子内氢键(一个由水分子介导)对β-转角构象的稳定作用来解释。这些稳定且易于获得的环肽可作为评估磷酸酪氨酸替代物和进一步化学修饰的模板。