Comparative structural analysis of the Erbin PDZ domain and the first PDZ domain of ZO-1 - Insights into determinants of PDZ domain specificity

被引:67
|
作者
Appleton, Brent A.
Zhang, Yingnan
Wu, Ping
Yin, Jian Ping
Hunziker, Walter
Skelton, Nicholas J.
Sidhu, Sachdev S.
Wiesmann, Christian
机构
[1] Genentech Inc, Dept Prot Engn, San Francisco, CA 94080 USA
[2] Genentech Inc, Dept Med Chem, San Francisco, CA 94080 USA
[3] Inst Mol & Cell Biol, Epithelial Cell Biol Lab, Singapore 138673, Singapore
关键词
D O I
10.1074/jbc.M602901200
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
We report a structural comparison of the first PDZ domain of ZO-1 (ZO1-PDZ1) and the PDZ domain of Erbin (Erbin-PDZ). Although the binding profile of Erbin-PDZ is extremely specific ([D/E][T/S]WVCOOH), that of ZO1-PDZ1 is similar ([R/K/S/T][T/S][W/Y][V/I/L](COOH)) but broadened by increased promiscuity for three of the last four ligand residues. Consequently, the biological function of ZO-1 is also broadened, as it interacts with both tight and adherens junction proteins, whereas Erbin is restricted to adherens junctions. Structural analyses reveal that the differences in specificity can be accounted for by two key differences in primary sequence. A reduction in the size of the hydrophobic residue at the base of the site(0) pocket enables ZO1PDZ1 to accommodate larger C-terminal residues. A single additional difference alters the specificity of both site(-1) and site(-3). In ZO1-PDZ1, an Asp residue makes favorable interactions with both Tyr(-1) and Lys/Arg(-3). In contrast, Erbin-PDZ contains an Arg at the equivalent position, and this side chain cannot accommodate either Tyr(-1) or Lys/Arg(-3) but, instead, interacts favorably with Glu/Asp(-3). We propose a model for ligand recognition that accounts for interactions extending across the entire binding site but that highlights several key specificity switches within the PDZ domain fold.
引用
收藏
页码:22312 / 22320
页数:9
相关论文
共 50 条
  • [21] PDZ domain proteins of synapses
    Eunjoon Kim
    Morgan Sheng
    Nature Reviews Neuroscience, 2004, 5 : 771 - 781
  • [22] Crystal structure of a PDZ domain
    Cabral, JHM
    Petosa, C
    Sutcliffe, MJ
    Raza, S
    Byron, O
    Poy, F
    Marfatia, SM
    Chishti, AH
    Liddington, RC
    NATURE, 1996, 382 (6592) : 649 - 652
  • [23] PDZ domain polarity complexes
    Bilder, D
    CURRENT BIOLOGY, 2003, 13 (17) : R661 - R662
  • [24] Alteration of the C-Terminal Ligand Specificity of the Erbin PDZ Domain by Allosteric Mutational Effects
    Murciano-Calles, Javier
    McLaughlin, Megan E.
    Erijman, Ariel
    Hooda, Yogesh
    Chakravorty, Nishant
    Martinez, Jose C.
    Shifman, Julia M.
    Sidhu, Sachdev S.
    JOURNAL OF MOLECULAR BIOLOGY, 2014, 426 (21) : 3500 - 3508
  • [25] PDZ domain as you like it
    Hughes, Robert E.
    Fields, Stanley
    Nature Biotechnology, 1999, 17 (02):
  • [26] Neuronal connexin36 association with zonula occludens-1 protein (ZO-1) in mouse brain and interaction with the first PDZ domain of ZO-1
    Li, XB
    Olson, C
    Lu, SJ
    Kamasawa, N
    Yasumura, T
    Rash, JE
    Nagy, JI
    EUROPEAN JOURNAL OF NEUROSCIENCE, 2004, 19 (08) : 2132 - 2146
  • [27] PDZ domain proteins of synapses
    Kim, EJ
    Sheng, M
    NATURE REVIEWS NEUROSCIENCE, 2004, 5 (10) : 771 - 781
  • [29] GTPase activating specificity of RGS12 and binding specificity of an alternatively spliced PDZ (PSD-95/Dlg/ZO-1) domain
    Snow, BE
    Hall, RA
    Krumins, AM
    Brothers, GM
    Bouchard, D
    Brothers, CA
    Chung, S
    Mangion, J
    Gilman, AG
    Lefkowitz, RJ
    Siderovski, DP
    JOURNAL OF BIOLOGICAL CHEMISTRY, 1998, 273 (28) : 17749 - 17755
  • [30] Structural Insights into a Wildtype Domain of the Oncoprotein E6 and Its Interaction with a PDZ Domain
    Mischo, Andre
    Ohlenschlaeger, Oliver
    Hortschansky, Peter
    Ramachandran, Ramadurai
    Goerlach, Matthias
    PLOS ONE, 2013, 8 (04):