Biochemical and Biophysical Research Communications, Vol.485, No.3, 584-590, 2017
Crystal structure of the PDZ domain of mouse Dishevelled 1 and its interaction with CXXC5
Dishevelled (Dvl) plays a crucial role in Wnt signaling by interacting with membrane-bound receptors and downstream molecules through its PDZ domain. CXXC5 is one of the key molecules that interacts with Dvl and negatively regulates the Wnt/13-catenin pathway in osteoblast differentiation. Recently, the Dvl-CXXC5 interaction has been identified as an excellent target for osteoporosis treatment. Therefore, it is desirable to have detailed structural information for the Dvl-CXXC5 interaction. Although solution structures of the Dvll PDZ domain have been reported, a high-resolution crystal structure would provide detailed sidechain information that is essential for drug development. Here, we determined the first crystal structure of the Dvl-1 PDZ domain at a resolution of 1.76 A, and compared it with its previously reported solution structure. The Dvll PDZ domain crystal belonged to the space group H32 with unit-cell parameters a = b = 72.837, c = 120.616, alpha = beta = 90.00, gamma = 120.00. The crystal structure of Dvll PDZ shared its topology with the previously reported structure determined by nuclear magnetic resonance (NMR); however, the crystal structure was quite different from the solution structure in both the secondary structural region and the ligand-binding pocket. Molecular modeling based on NMR and X-ray crystallographic data yielded detailed information about the Dvll /CXXC5 interaction, which will be useful for designing inhibitors. (C) 2016 Elsevier Inc. All rights reserved.