Literature DB >> 23642211

Enlarging the panoply of site-directed spin labeling electron paramagnetic resonance (SDSL-EPR): sensitive and selective spin-labeling of tyrosine using an isoindoline-based nitroxide.

Elisabetta Mileo1, Emilien Etienne, Marlène Martinho, Régine Lebrun, Valérie Roubaud, Paul Tordo, Brigitte Gontero, Bruno Guigliarelli, Sylvain R A Marque, Valérie Belle.   

Abstract

Site-directed spin labeling (SDSL) combined with electron paramagnetic resonance (EPR) spectroscopy has emerged as a powerful approach to study structure and dynamics in proteins. One limitation of this approach is the fact that classical spin labels are functionalized to be grafted on natural or site-directed mutagenesis generated cysteine residues. Despite the widespread success of cysteine-based modification strategies, the technique becomes unsuitable when cysteine residues play a functional or structural role in the protein under study. To overcome this limitation, we propose an isoindoline-based nitroxide to selectively target tyrosine residues using a Mannich type reaction, the feasibility of which has been demonstrated in a previous study. This nitroxide has been synthesized and successfully grafted successively on p-cresol, a small tetrapeptide and a model protein: a small chloroplastic protein CP12 having functional cysteines and a single tyrosine. Studying the association of the labeled CP12 with its partner protein, we showed that the isoindoline-based nitroxide is a good reporter to reveal changes in its local environment contrary to the previous study where the label was poorly sensitive to probe structural changes. The successful targeting of tyrosine residues with the isoindoline-based nitroxide thus offers a highly promising approach, complementary to the classical cysteine-SDSL one, which significantly enlarges the field of applications of the technique for probing protein dynamics.

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Year:  2013        PMID: 23642211     DOI: 10.1021/bc4000542

Source DB:  PubMed          Journal:  Bioconjug Chem        ISSN: 1043-1802            Impact factor:   4.774


  6 in total

1.  Continuous wave W- and D-band EPR spectroscopy offer "sweet-spots" for characterizing conformational changes and dynamics in intrinsically disordered proteins.

Authors:  Thomas M Casey; Zhanglong Liu; Jackie M Esquiaqui; Natasha L Pirman; Eugene Milshteyn; Gail E Fanucci
Journal:  Biochem Biophys Res Commun       Date:  2014-06-17       Impact factor: 3.575

Review 2.  A molecular engineering toolbox for the structural biologist.

Authors:  Galia T Debelouchina; Tom W Muir
Journal:  Q Rev Biophys       Date:  2017-01       Impact factor: 5.318

Review 3.  Exploring intrinsically disordered proteins using site-directed spin labeling electron paramagnetic resonance spectroscopy.

Authors:  Nolwenn Le Breton; Marlène Martinho; Elisabetta Mileo; Emilien Etienne; Guillaume Gerbaud; Bruno Guigliarelli; Valérie Belle
Journal:  Front Mol Biosci       Date:  2015-05-19

4.  Protein Spin Labeling with a Photocaged Nitroxide Using Diels-Alder Chemistry.

Authors:  Anandi Kugele; Bjarne Silkenath; Jakob Langer; Valentin Wittmann; Malte Drescher
Journal:  Chembiochem       Date:  2019-08-14       Impact factor: 3.164

Review 5.  Intrinsically disordered proteins of viruses: Involvement in the mechanism of cell regulation and pathogenesis.

Authors:  Pushpendra Mani Mishra; Navneet Chandra Verma; Chethana Rao; Vladimir N Uversky; Chayan Kanti Nandi
Journal:  Prog Mol Biol Transl Sci       Date:  2020-04-02       Impact factor: 3.622

6.  Isoindoline-Based Nitroxides as Bioresistant Spin Labels for Protein Labeling through Cysteines and Alkyne-Bearing Noncanonical Amino Acids.

Authors:  Theresa Sophie Braun; Pia Widder; Uwe Osswald; Lina Groß; Lara Williams; Moritz Schmidt; Irina Helmle; Daniel Summerer; Malte Drescher
Journal:  Chembiochem       Date:  2019-12-06       Impact factor: 3.164

  6 in total

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