Department of Biochemistry, The University of Western Ontario , London, Ontario N6A 5C1, Canada.
J Med Chem. 2011 Jun 9;54(11):3854-65. doi: 10.1021/jm200156c. Epub 2011 May 5.
Phage panning led to the discovery of a disulfide-cyclized peptide CRYPEVEIC that inhibits Pin1 activity with a K(I) of 0.5 μM. NMR chemical shift perturbation experiments show that cyclic CRYPEVEIC binds to the active site of Pin1. Pin1 residues K63 and R68, which bind the phosphate of substrate peptides, do not show a significant chemical shift change in response to binding of cyclic CRYPEVEIC, consistent with absence of phosphate on the peptide. Cyclic CRYPEVEIC adopts a stable conformation with the side chains of the Y, P, V, and I residues packed together on one side of the ring. Cyclic CRYPEVEIC in solution exists as a mixture of two species, with a 1:4 cis/trans ratio for the Y-P bond. This mixture is stabilized to a single conformation when bound to Pin1. The constrained structure of cyclic CRYPEVEIC apparently facilitates high affinity binding without the presence of a phosphate group.
噬菌体展示技术导致了一种二硫键环化肽 CRYPEVEIC 的发现,该肽能以 0.5 μM 的 K(i)抑制 Pin1 的活性。NMR 化学位移扰动实验表明,环状 CRYPEVEIC 结合到 Pin1 的活性位点。Pin1 残基 K63 和 R68 结合底物肽的磷酸基团,在结合环状 CRYPEVEIC 时没有显示出明显的化学位移变化,这与肽上没有磷酸基团一致。环状 CRYPEVEIC 采用一种稳定的构象,其 Y、P、V 和 I 残基的侧链在环的一侧堆积在一起。在溶液中,环状 CRYPEVEIC 以两种物质的混合物形式存在,Y-P 键的顺式/反式比例为 1:4。当与 Pin1 结合时,这种混合物稳定为单一构象。环状 CRYPEVEIC 的约束结构显然在没有磷酸基团的情况下促进了高亲和力结合。