Literature DB >> 23839950

Modulating the folding stability and ligand binding affinity of Pin1 WW domain by proline ring puckering.

Hsu-Cheng Tang1, Yu-Ju Lin, Jia-Cherng Horng.   

Abstract

The pyrrolidine side chain makes proline play a unique role in protein structure and function. The C(γ) ring pucker preference and the cis-trans peptidyl bond ratio can be mediated via stereoelectronic effects. Here we used a compact triple-stranded antiparallel β-sheet protein, the human Pin1 WW domain, to study the consequences of implanting a preorganized C(γ) ring pucker on protein structure and function. The conserved Pro37 is a key residue involved in one hydrophobic core, plays an important role in the WW domain, and adopts a C(γ) -endo ring pucker in the native structure. Pro37 was replaced with C(γ) -exo biased pucker derivatives: (2S,4R)-4-hydroxyproline (4R-Hyp), (2S,4R)-4-fluoroproline (4R-Flp), (2S,4R)-4-methoxyproline (4R-Mop), and C(γ) -endo biased pucker derivatives: (2S,4S)-4-hydroxyproline (4S-hyp), (2S,4S)-4-fluoroproline (4S-flp), (2S,4S)-4-methoxyproline (4S-mop) to examine how a preorganized pucker affects the folding stability and ligand-binding affinity. Circular dichroism measurements indicate that among the variants, only the one with 4S-flp substitution (P37flp) is more stable than the wild type, suggesting that the stabilization effects originated from preorganization of the backbone conformation and the hydrophobicity of C - F group. Analysis of ligand-binding affinity using isothermal titration calorimetry revealed that only P37flp has a stronger ligand affinity than the wild type, showing that 4S-flp can stabilize the WW domain and increase its ligand affinity. Together we have used 4-substituted proline derivatives and the WW domain to demonstrate that proline ring puckering can be a key factor in determining the folding stability of a protein but the choice of the derivative groups is also critical.
Copyright © 2013 Wiley Periodicals, Inc.

Entities:  

Keywords:  circular dichroism; fluoroproline; hydrophobic effect; hydroxyproline; isothermal titration calorimetry; methoxyproline; steric effect

Mesh:

Substances:

Year:  2013        PMID: 23839950     DOI: 10.1002/prot.24359

Source DB:  PubMed          Journal:  Proteins        ISSN: 0887-3585


  4 in total

1.  4-Fluoroprolines: Conformational Analysis and Effects on the Stability and Folding of Peptides and Proteins.

Authors:  Robert W Newberry; Ronald T Raines
Journal:  Top Heterocycl Chem       Date:  2016-01-12

2.  Fluorine-Containing Drug Administration in Rats Results in Fluorination of Selected Proteins in Liver and Brain Tissue.

Authors:  Andrzej Gawor; Zdzislaw Gajewski; Leszek Paczek; Bozena Czarkowska-Paczek; Anna Konopka; Grzegorz Wryk; Ewa Bulska
Journal:  Int J Mol Sci       Date:  2022-04-11       Impact factor: 6.208

Review 3.  Biochemistry of fluoroprolines: the prospect of making fluorine a bioelement.

Authors:  Vladimir Kubyshkin; Rebecca Davis; Nediljko Budisa
Journal:  Beilstein J Org Chem       Date:  2021-02-15       Impact factor: 2.883

4.  Influence of Fluorination on Single-Molecule Unfolding and Rupture Pathways of a Mechanostable Protein Adhesion Complex.

Authors:  Byeongseon Yang; Haipei Liu; Zhaowei Liu; Regina Doenen; Michael A Nash
Journal:  Nano Lett       Date:  2020-11-16       Impact factor: 11.189

  4 in total

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