Furet P, Gay B, Caravatti G, García-Echeverría C, Rahuel J, Schoepfer J, Fretz H
Novartis Pharma Inc., Oncology Research Department, CH-4002 Basel, Switzerland.
J Med Chem. 1998 Aug 27;41(18):3442-9. doi: 10.1021/jm980159a.
The X-ray structure of the Grb2-SH2 domain in complex with a specific phosphopeptide ligand has revealed the existence of an extended hydrophobic area adjacent to the primary binding site of the ligand on the SH2 domain. This has been exploited to design hydrophobic C-terminal groups that improve the binding affinity of the minimal sequence pTyr-Ile-Asn recognized by the Grb2-SH2 domain. The most significant increase in affinity (25-fold compared to that of the reference peptide having a nonsubstituted carboxamide C-terminus) was obtained with a 3-naphthalen-1-yl-propyl group which was predicted to have the largest contact area with the SH2 domain hydrophobic region. This modification combined with replacement of the minimal sequence isoleucine residue by 1-aminocyclohexane carboxylic acid to stabilize the beta-turn conformation required for recognition by the Grb2-SH2 domain resulted in the high affinity (47 nM in an ELISA assay) and selective phosphopeptide Ac-pTyr-Ac6c-Asn-NH(3-naphthalen-1-yl-propyl).
Grb2-SH2结构域与特定磷酸肽配体复合物的X射线结构显示,在SH2结构域上配体的主要结合位点附近存在一个延伸的疏水区域。这已被用于设计疏水的C末端基团,以提高Grb2-SH2结构域识别的最小序列pTyr-Ile-Asn的结合亲和力。与具有未取代羧酰胺C末端的参考肽相比,亲和力增加最为显著(25倍)的是3-萘-1-基丙基,预计它与SH2结构域疏水区域的接触面积最大。这种修饰与用1-氨基环己烷羧酸取代最小序列异亮氨酸残基相结合,以稳定Grb2-SH2结构域识别所需的β-转角构象,从而产生了高亲和力(ELISA测定中为47 nM)和选择性磷酸肽Ac-pTyr-Ac6c-Asn-NH(3-萘-1-基丙基)。