Redox-mediated substrate recognition by Sdp1 defines a new group of tyrosine phosphatases

被引:34
作者
Fox, G. C.
Shafiq, M.
Briggs, D. C.
Knowles, P. P.
Collister, M.
Didmon, M. J.
Makrantoni, V.
Dickinson, R. J.
Hanrahan, S.
Totty, N.
Stark, M. J. R.
Keyse, S. M.
McDonald, N. Q.
机构
[1] Canc Res UK, Struct Biol Lab, London Res Inst, London WC2A 3PX, England
[2] Canc Res UK, Prot Anal Lab, London Res Inst, London WC2A 3PX, England
[3] Univ London Birkbeck Coll, Sch Crystallog, London WC1E 7HX, England
[4] Ninewells Hosp, Canc Res UK, Stress Response Lab, Ctr Biomed Res, Dundee DD1 9SY, Scotland
[5] Univ Dundee, Div Gene Regulat & Express, Coll Life Sci, Dundee DD1 5EH, Scotland
基金
英国生物技术与生命科学研究理事会;
关键词
D O I
10.1038/nature05804
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Reactive oxygen species trigger cellular responses by activation of stress-responsive mitogen-activated protein kinase ( MAPK) signalling pathways(1,2). Reversal of MAPK activation requires the transcriptional induction of specialized cysteine-based phosphatases that mediate MAPK dephosphorylation(3). Paradoxically, oxidative stresses generally inactivate cysteine-based phosphatases by thiol modification and thus could lead to sustained or uncontrolled MAPK activation(4,5). Here we describe how the stress-inducible MAPK phosphatase, Sdp1, presents an unusual solution to this apparent paradox by acquiring enhanced catalytic activity under oxidative conditions. Structural and biochemical evidence reveals that Sdp1 employs an intramolecular disulphide bridge and an invariant histidine side chain to selectively recognize a tyrosine-phosphorylated MAPK substrate. Optimal activity critically requires the disulphide bridge, and thus, to the best of our knowledge, Sdp1 is the first example of a cysteine-dependent phosphatase that couples oxidative stress with substrate recognition. We show that Sdp1, and its paralogue Msg5, have similar properties and belong to a new group of phosphatases unique to yeast and fungal taxa.
引用
收藏
页码:487 / 492
页数:6
相关论文
共 30 条
[1]   Lipid hydroperoxides activate the mitogen-activated protein kinase Mpk1p in Saccharomyces cerevisiae [J].
Alic, N ;
Higgins, VJ ;
Pichova, A ;
Breitenbach, M ;
Dawes, IW .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2003, 278 (43) :41849-41855
[2]   Protein tyrosine phosphatases in the human genome [J].
Alonso, A ;
Sasin, J ;
Bottini, N ;
Friedberg, I ;
Friedberg, I ;
Osterman, A ;
Godzik, A ;
Hunter, T ;
Dixon, J ;
Mustelin, T .
CELL, 2004, 117 (06) :699-711
[3]   The structure and mechanism of protein phosphatases: Insights into catalysis and regulation [J].
Barford, D ;
Das, AK ;
Egloff, MP .
ANNUAL REVIEW OF BIOPHYSICS AND BIOMOLECULAR STRUCTURE, 1998, 27 :133-164
[4]   The role of cysteine residues as redox-sensitive regulatory switches [J].
Barford, D .
CURRENT OPINION IN STRUCTURAL BIOLOGY, 2004, 14 (06) :679-686
[5]   Mammalian MAP kinase signalling cascades [J].
Chang, LF ;
Karin, M .
NATURE, 2001, 410 (6824) :37-40
[6]   YIL113w encodes a functional dual-specificity protein phosphatase which specifically interacts with and inactivates the Slt2/Mpk1p MAP kinase in S-cerevisiae [J].
Collister, M ;
Didmon, MP ;
MacIsaac, F ;
Stark, MJ ;
MacDonald, NQ ;
Keyse, SM .
FEBS LETTERS, 2002, 527 (1-3) :186-192
[7]   A thiol peroxidase is an H2O2 receptor and redox-transducer in gene activation [J].
Delaunay, A ;
Pflieger, D ;
Barrault, MB ;
Vinh, J ;
Toledano, MB .
CELL, 2002, 111 (04) :471-481
[8]   Reciprocal regulation between Slt2 MAPK and isoforms of Msg5 dual-specificity protein phosphatase modulates the yeast cell integrity pathway [J].
Flández, M ;
Cosano, IC ;
Nombela, C ;
Martín, H ;
Molina, M .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2004, 279 (12) :11027-11034
[9]   Differential regulation of the MAP, SAP and RK/p38 kinases by Pyst1, a novel cytosolic dual-specificity phosphatase [J].
Groom, LA ;
Sneddon, AA ;
Alessi, DR ;
Dowd, S ;
Keyse, SM .
EMBO JOURNAL, 1996, 15 (14) :3621-3632
[10]   Regulation of the Saccharomyces cerevisiae Slt2 kinase pathway by the stress-inducible Sdp1 dual specificity phosphatase [J].
Hahn, JS ;
Thiele, DJ .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2002, 277 (24) :21278-21284