Literature DB >> 11313338

1H NMR study on the binding of Pin1 Trp-Trp domain with phosphothreonine peptides.

R Wintjens1, J M Wieruszeski, H Drobecq, P Rousselot-Pailley, L Buée, G Lippens, I Landrieu.   

Abstract

The recent crystal structure of Pin1 protein bound to a doubly phosphorylated peptide from the C-terminal domain of RNA polymerase II revealed that binding interactions between Pin1 and its substrate take place through its Trp-Trp (WW) domain at the level of the loop Ser(11)-Arg(12) and the aromatic pair Tyr(18)-Trp(29), and showed a trans conformation for both pSer-Pro peptide bonds. However, the orientation of the ligand in the aromatic recognition groove still could be sequence-specific, as previously observed in SH3 domains complexed by peptide ligands or for different class of WW domains (Zarrinpar, A., and Lim, W. A. (2000) Nat. Struct. Biol. 7, 611-613). Because the bound peptide conformation could also differ as observed for peptide ligands bound to the 14-3-3 domain, ligand orientation and conformation for two other biologically relevant monophosphate substrates, one derived from the Cdc25 phosphatase of Xenopus laevis (EQPLpTPVTDL) and another from the human tau protein (KVSVVRpTPPKSPS) in complex with the WW domain are here studied by solution NMR methods. First, the proton resonance perturbations on the WW domain upon complexation with both peptide ligands were determined to be essentially located in the positively charged beta-hairpin Ser(11)-Gly(15) and around the aromatic Trp(29). Dissociation equilibrium constants of 117 and 230 microm for Cdc25 and tau peptides, respectively, were found. Several intermolecular nuclear Overhauser effects between WW domain and substrates were obtained from a ligand-saturated solution and were used to determine the structures of the complexes in solution. We found a similar N to C orientation as the one observed in the crystal complex structure of Pin1 and a trans conformation for the pThr-Pro peptidic bond in both peptide ligands, thereby indicating a unique binding scheme for the Pin1 WW domain to its multiple substrates.

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Year:  2001        PMID: 11313338     DOI: 10.1074/jbc.M010327200

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  41 in total

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3.  Unraveling a phosphorylation event in a folded protein by NMR spectroscopy: phosphorylation of the Pin1 WW domain by PKA.

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4.  Markov state model reveals folding and functional dynamics in ultra-long MD trajectories.

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5.  Characterization of native protein complexes using ultraviolet photodissociation mass spectrometry.

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Journal:  Biochemistry       Date:  2012-10-16       Impact factor: 3.162

7.  Discovery and binding studies on a series of novel Pin1 ligands.

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8.  Pre-Anchoring of Pin1 to Unphosphorylated c-Myc in a Fuzzy Complex Regulates c-Myc Activity.

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Journal:  Structure       Date:  2015-11-19       Impact factor: 5.006

9.  Modeling conformational ensembles of slow functional motions in Pin1-WW.

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Journal:  PLoS Comput Biol       Date:  2010-12-02       Impact factor: 4.475

10.  Effect of Pin1 or microtubule binding on dephosphorylation of FTDP-17 mutant Tau.

Authors:  Kensuke Yotsumoto; Taro Saito; Akiko Asada; Takayuki Oikawa; Taeko Kimura; Chiyoko Uchida; Koichi Ishiguro; Takafumi Uchida; Masato Hasegawa; Shin-ichi Hisanaga
Journal:  J Biol Chem       Date:  2009-04-28       Impact factor: 5.157

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