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Probing pattern and dynamics of disulfide bridges using synthesis and NMR of an ion channel blocker peptide toxin with multiple diselenide bonds

Anuroctoxin (AnTx), a 35-amino-acid scorpion toxin containing four disulfide bridges, is a high affinity blocker of the voltage-gated potassium channel Kv1.3, but also blocks Kv1.2. To improve potential therapeutic use of the toxin, we have designed a double substituted analog, [N17A/F32T]-AnTx, whi...

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Autores principales: Fehér, Krisztina, Timári, István, Rákosi, Kinga, Szolomájer, János, Illyés, Tünde Z., Bartok, Adam, Varga, Zoltan, Panyi, Gyorgy, Tóth, Gábor K., Kövér, Katalin E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Royal Society of Chemistry 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5477041/
https://www.ncbi.nlm.nih.gov/pubmed/28660039
http://dx.doi.org/10.1039/c5sc03995a
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author Fehér, Krisztina
Timári, István
Rákosi, Kinga
Szolomájer, János
Illyés, Tünde Z.
Bartok, Adam
Varga, Zoltan
Panyi, Gyorgy
Tóth, Gábor K.
Kövér, Katalin E.
author_facet Fehér, Krisztina
Timári, István
Rákosi, Kinga
Szolomájer, János
Illyés, Tünde Z.
Bartok, Adam
Varga, Zoltan
Panyi, Gyorgy
Tóth, Gábor K.
Kövér, Katalin E.
author_sort Fehér, Krisztina
collection PubMed
description Anuroctoxin (AnTx), a 35-amino-acid scorpion toxin containing four disulfide bridges, is a high affinity blocker of the voltage-gated potassium channel Kv1.3, but also blocks Kv1.2. To improve potential therapeutic use of the toxin, we have designed a double substituted analog, [N17A/F32T]-AnTx, which showed comparable Kv1.3 affinity to the wild-type peptide, but also a 2500-fold increase in the selectivity for Kv1.3 over Kv1.2. In the present study we have achieved the chemical synthesis of a Sec-analog in which all cysteine (Cys) residues have been replaced by selenocysteine (Sec) forming four diselenide bonds. To the best of our knowledge this is the first time to replace, by chemical synthesis, all disulfide bonds with isosteric diselenides in a peptide/protein. Gratifyingly, the key pharmacological properties of the Sec-[N17A/F32T]-AnTx are retained since the peptide is functionally active. We also propose here a combined experimental and theoretical approach including NOE- and (77)Se-based NMR supplemented by MD simulations for conformational and dynamic characterization of the Sec-[N17A/F32T]-AnTx. Using this combined approach allowed us to attain unequivocal assignment of all four diselenide bonds and supplemental MD simulations allowed characterization of the conformational dynamics around each disulfide/diselenide bridge.
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spelling pubmed-54770412017-06-28 Probing pattern and dynamics of disulfide bridges using synthesis and NMR of an ion channel blocker peptide toxin with multiple diselenide bonds Fehér, Krisztina Timári, István Rákosi, Kinga Szolomájer, János Illyés, Tünde Z. Bartok, Adam Varga, Zoltan Panyi, Gyorgy Tóth, Gábor K. Kövér, Katalin E. Chem Sci Chemistry Anuroctoxin (AnTx), a 35-amino-acid scorpion toxin containing four disulfide bridges, is a high affinity blocker of the voltage-gated potassium channel Kv1.3, but also blocks Kv1.2. To improve potential therapeutic use of the toxin, we have designed a double substituted analog, [N17A/F32T]-AnTx, which showed comparable Kv1.3 affinity to the wild-type peptide, but also a 2500-fold increase in the selectivity for Kv1.3 over Kv1.2. In the present study we have achieved the chemical synthesis of a Sec-analog in which all cysteine (Cys) residues have been replaced by selenocysteine (Sec) forming four diselenide bonds. To the best of our knowledge this is the first time to replace, by chemical synthesis, all disulfide bonds with isosteric diselenides in a peptide/protein. Gratifyingly, the key pharmacological properties of the Sec-[N17A/F32T]-AnTx are retained since the peptide is functionally active. We also propose here a combined experimental and theoretical approach including NOE- and (77)Se-based NMR supplemented by MD simulations for conformational and dynamic characterization of the Sec-[N17A/F32T]-AnTx. Using this combined approach allowed us to attain unequivocal assignment of all four diselenide bonds and supplemental MD simulations allowed characterization of the conformational dynamics around each disulfide/diselenide bridge. Royal Society of Chemistry 2016-04-01 2015-12-21 /pmc/articles/PMC5477041/ /pubmed/28660039 http://dx.doi.org/10.1039/c5sc03995a Text en This journal is © The Royal Society of Chemistry 2016 http://creativecommons.org/licenses/by/3.0/ This article is freely available. This article is licensed under a Creative Commons Attribution 3.0 Unported Licence (CC BY 3.0)
spellingShingle Chemistry
Fehér, Krisztina
Timári, István
Rákosi, Kinga
Szolomájer, János
Illyés, Tünde Z.
Bartok, Adam
Varga, Zoltan
Panyi, Gyorgy
Tóth, Gábor K.
Kövér, Katalin E.
Probing pattern and dynamics of disulfide bridges using synthesis and NMR of an ion channel blocker peptide toxin with multiple diselenide bonds
title Probing pattern and dynamics of disulfide bridges using synthesis and NMR of an ion channel blocker peptide toxin with multiple diselenide bonds
title_full Probing pattern and dynamics of disulfide bridges using synthesis and NMR of an ion channel blocker peptide toxin with multiple diselenide bonds
title_fullStr Probing pattern and dynamics of disulfide bridges using synthesis and NMR of an ion channel blocker peptide toxin with multiple diselenide bonds
title_full_unstemmed Probing pattern and dynamics of disulfide bridges using synthesis and NMR of an ion channel blocker peptide toxin with multiple diselenide bonds
title_short Probing pattern and dynamics of disulfide bridges using synthesis and NMR of an ion channel blocker peptide toxin with multiple diselenide bonds
title_sort probing pattern and dynamics of disulfide bridges using synthesis and nmr of an ion channel blocker peptide toxin with multiple diselenide bonds
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5477041/
https://www.ncbi.nlm.nih.gov/pubmed/28660039
http://dx.doi.org/10.1039/c5sc03995a
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