Department of Bioengineering, College of Engineering, Hanyang University, Seoul, Korea.
Department of Radiation onclogy, College of Medicine, Hanyang University, Seoul, Korea.
Pharmacol Res. 2018 Feb;128:211-219. doi: 10.1016/j.phrs.2017.10.006. Epub 2017 Oct 27.
Dual specificity phosphatases (DUSPs) include MAP kinase phosphatases and atypical dual specificity phosphatases and mediate cell growth and differentiation, brain function, and immune responses. They serve as targets for drug development against cancers, diabetes and depression. Several DUSPs have non-canonical conformation of the central β-sheet and active site loops, suggesting that they may have conformational switch that is related to the regulation of enzyme activity. Here, we determined the crystal structure of DUSP13a, and identified two different structures that represent intermediates of the postulated conformational switch. Amino acid sequence of DUSP13a is not significantly homologous to DUSPs with conformational switch, indicating that the conformational switch is not sequence-dependent, but rather determined by ligand interaction. The sequence-independency suggests that other DUSPs with canonical conformation may have the conformational switch during specific cellular regulation. The conformational switch leads to significant changes in the protein surface, including a hydrophobic surface and pockets, which can be exploited for development of allosteric modulators of drug target DUSPs.
双特异性磷酸酶(DUSPs)包括 MAP 激酶磷酸酶和非典型双特异性磷酸酶,它们介导细胞生长和分化、大脑功能和免疫反应。它们可作为针对癌症、糖尿病和抑郁症的药物开发的靶点。一些 DUSPs 的中央 β-片层和活性位点环具有非典型构象,表明它们可能具有与酶活性调节相关的构象转换。在这里,我们确定了 DUSP13a 的晶体结构,并鉴定了代表所假设的构象转换中间产物的两种不同结构。DUSP13a 的氨基酸序列与具有构象转换的 DUSPs 没有显著的同源性,这表明构象转换不是序列依赖性的,而是由配体相互作用决定的。这种序列独立性表明,其他具有典型构象的 DUSPs 在特定的细胞调节过程中可能具有构象转换。构象转换导致蛋白质表面发生显著变化,包括疏水面和口袋,这可用于开发药物靶标 DUSPs 的变构调节剂。