Won Eun Young, Xie Yong, Takemoto Chie, Chen Lirong, Liu Zhi Jie, Wang Bi Cheng, Lee Daeyoup, Woo Eui Jeon, Park Sung Goo, Shirouzu Mikako, Yokoyama Shigeyuki, Kim Seung Jun, Chi Seung Wook
Department of Biological Sciences, Korea Advanced Institute of Science and Technology, Daejeon 305-701, Republic of Korea.
Acta Crystallogr D Biol Crystallogr. 2013 Jun;69(Pt 6):1160-70. doi: 10.1107/S0907444913004770. Epub 2013 May 16.
Dual-specificity phosphatases (DUSPs) play an important role in regulating cellular signalling pathways governing cell growth, differentiation and apoptosis. Human DUSP26 inhibits the apoptosis of cancer cells by dephosphorylating substrates such as p38 and p53. High-resolution crystal structures of the DUSP26 catalytic domain (DUSP26-C) and its C152S mutant [DUSP26-C (C152S)] have been determined at 1.67 and 2.20 Å resolution, respectively. The structure of DUSP26-C showed a novel type of domain-swapped dimer formed by extensive crossover of the C-terminal α7 helix. Taken together with the results of a phosphatase-activity assay, structural comparison with other DUSPs revealed that DUSP26-C adopts a catalytically inactive conformation of the protein tyrosine phosphate-binding loop which significantly deviates from that of canonical DUSP structures. In particular, a noticeable difference exists between DUSP26-C and the active forms of other DUSPs at the hinge region of a swapped C-terminal domain. Additionally, two significant gaps were identified between the catalytic core and its surrounding loops in DUSP26-C, which can be exploited as additional binding sites for allosteric enzyme regulation. The high-resolution structure of DUSP26-C may thus provide structural insights into the rational design of DUSP26-targeted anticancer drugs.
双特异性磷酸酶(DUSPs)在调节控制细胞生长、分化和凋亡的细胞信号通路中发挥重要作用。人类DUSP26通过使诸如p38和p53等底物去磷酸化来抑制癌细胞凋亡。已分别以1.67 Å和2.20 Å的分辨率确定了DUSP26催化结构域(DUSP26-C)及其C152S突变体[DUSP26-C(C152S)]的高分辨率晶体结构。DUSP26-C的结构显示出一种新型的结构域交换二聚体,由C末端α7螺旋的广泛交叉形成。结合磷酸酶活性测定结果,与其他DUSPs的结构比较表明,DUSP26-C采用了蛋白酪氨酸磷酸结合环的催化无活性构象,这与典型的DUSP结构有显著差异。特别是,在交换的C末端结构域的铰链区,DUSP26-C与其他DUSPs的活性形式之间存在明显差异。此外,在DUSP26-C的催化核心与其周围环之间发现了两个明显的间隙,可作为变构酶调节的额外结合位点。因此,DUSP26-C的高分辨率结构可能为靶向DUSP26的抗癌药物的合理设计提供结构见解。