Structural Genomics Consortium, Oxford University, Oxford, OX3 7DQ, United Kingdom.
Protein Sci. 2010 Apr;19(4):731-41. doi: 10.1002/pro.349.
PDZ domains most commonly bind the C-terminus of their protein targets. Typically the C-terminal four residues of the protein target are considered as the binding motif, particularly the C-terminal residue (P0) and third-last residue (P-2) that form the major contacts with the PDZ domain's "binding groove". We solved crystal structures of seven human PDZ domains, including five of the seven PDLIM family members. The structures of GRASP, PDLIM2, PDLIM5, and PDLIM7 show a binding mode with only the C-terminal P0 residue bound in the binding groove. Importantly, in some cases, the P-2 residue formed interactions outside of the binding groove, providing insight into the influence of residues remote from the binding groove on selectivity. In the GRASP structure, we observed both canonical and noncanonical binding in the two molecules present in the asymmetric unit making a direct comparison of these binding modes possible. In addition, structures of the PDZ domains from PDLIM1 and PDLIM4 also presented here allow comparison with canonical binding for the PDLIM PDZ domain family. Although influenced by crystal packing arrangements, the structures nevertheless show that changes in the positions of PDZ domain side-chains and the alpha B helix allow noncanonical binding interactions. These interactions may be indicative of intermediate states between unbound and fully bound PDZ domain and target protein. The noncanonical "perpendicular" binding observed potentially represents the general form of a kinetic intermediate. Comparison with canonical binding suggests that the rearrangement during binding involves both the PDZ domain and its ligand.
PDZ 结构域通常与蛋白质靶标的 C 末端结合。通常,蛋白质靶标的 C 末端四个残基被认为是结合基序,特别是 C 末端残基(P0)和倒数第三个残基(P-2),它们与 PDZ 结构域的“结合槽”形成主要接触。我们解析了七个人类 PDZ 结构域的晶体结构,包括七个 PDLIM 家族成员中的五个。GRASP、PDLIM2、PDLIM5 和 PDLIM7 的结构显示出仅与 C 末端 P0 残基结合在结合槽中的结合模式。重要的是,在某些情况下,P-2 残基在结合槽外形成相互作用,深入了解了远离结合槽的残基对选择性的影响。在 GRASP 结构中,我们观察到在不对称单位中存在的两个分子中存在两种规范和非规范结合,从而可以直接比较这些结合模式。此外,这里还呈现了 PDLIM1 和 PDLIM4 的 PDZ 结构域结构,可与 PDLIM PDZ 结构域家族的规范结合进行比较。尽管受到晶体包装排列的影响,但这些结构仍然表明 PDZ 结构域侧链和αB 螺旋位置的变化允许非规范结合相互作用。这些相互作用可能表明 PDZ 结构域和靶蛋白在未结合和完全结合之间的中间状态。观察到的非规范“垂直”结合可能代表动力学中间状态的一般形式。与规范结合的比较表明,结合过程中涉及 PDZ 结构域及其配体的重排。