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Spatial Structure and Activity of Synthetic Fragments of Lynx1 and of Nicotinic Receptor Loop C Models

Lynx1, membrane-bound protein co-localized with the nicotinic acetylcholine receptors (nAChRs) and regulates their function, is a three-finger protein (TFP) made of three β-structural loops, similarly to snake venom α-neurotoxin TFPs. Since the central loop II of α-neurotoxins is involved in binding...

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Autores principales: Mineev, Konstantin S., Kryukova, Elena V., Kasheverov, Igor E., Egorova, Natalia S., Zhmak, Maxim N., Ivanov, Igor A., Senko, Dmitry A., Feofanov, Alexey V., Ignatova, Anastasia A., Arseniev, Alexander S., Utkin, Yuri N., Tsetlin, Victor I.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7821949/
https://www.ncbi.nlm.nih.gov/pubmed/33374963
http://dx.doi.org/10.3390/biom11010001
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author Mineev, Konstantin S.
Kryukova, Elena V.
Kasheverov, Igor E.
Egorova, Natalia S.
Zhmak, Maxim N.
Ivanov, Igor A.
Senko, Dmitry A.
Feofanov, Alexey V.
Ignatova, Anastasia A.
Arseniev, Alexander S.
Utkin, Yuri N.
Tsetlin, Victor I.
author_facet Mineev, Konstantin S.
Kryukova, Elena V.
Kasheverov, Igor E.
Egorova, Natalia S.
Zhmak, Maxim N.
Ivanov, Igor A.
Senko, Dmitry A.
Feofanov, Alexey V.
Ignatova, Anastasia A.
Arseniev, Alexander S.
Utkin, Yuri N.
Tsetlin, Victor I.
author_sort Mineev, Konstantin S.
collection PubMed
description Lynx1, membrane-bound protein co-localized with the nicotinic acetylcholine receptors (nAChRs) and regulates their function, is a three-finger protein (TFP) made of three β-structural loops, similarly to snake venom α-neurotoxin TFPs. Since the central loop II of α-neurotoxins is involved in binding to nAChRs, we have recently synthesized the fragments of Lynx1 central loop, including those with the disulfide between Cys residues introduced at N- and C-termini, some of them inhibiting muscle-type nAChR similarly to the whole-size water-soluble Lynx1 (ws-Lynx1). Literature shows that the main fragment interacting with TFPs is the C-loop of both nAChRs and acetylcholine binding proteins (AChBPs) while some ligand-binding capacity is preserved by analogs of this loop, for example, by high-affinity peptide HAP. Here we analyzed the structural organization of these peptide models of ligands and receptors and its role in binding. Thus, fragments of Lynx1 loop II, loop C from the Lymnaea stagnalis AChBP and HAP were synthesized in linear and Cys-cyclized forms and structurally (CD and NMR) and functionally (radioligand assay on Torpedo nAChR) characterized. Connecting the C- and N-termini by disulfide in the ws-Lynx1 fragment stabilized its conformation which became similar to the loop II within the (1)H-NMR structure of ws-Lynx1, the activity being higher than for starting linear fragment but lower than for peptide with free cysteines. Introduced disulfides did not considerably change the structure of HAP and of loop C fragments, the former preserving high affinity for α-bungarotoxin, while, surprisingly, no binding was detected with loop C and its analogs.
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spelling pubmed-78219492021-01-23 Spatial Structure and Activity of Synthetic Fragments of Lynx1 and of Nicotinic Receptor Loop C Models Mineev, Konstantin S. Kryukova, Elena V. Kasheverov, Igor E. Egorova, Natalia S. Zhmak, Maxim N. Ivanov, Igor A. Senko, Dmitry A. Feofanov, Alexey V. Ignatova, Anastasia A. Arseniev, Alexander S. Utkin, Yuri N. Tsetlin, Victor I. Biomolecules Article Lynx1, membrane-bound protein co-localized with the nicotinic acetylcholine receptors (nAChRs) and regulates their function, is a three-finger protein (TFP) made of three β-structural loops, similarly to snake venom α-neurotoxin TFPs. Since the central loop II of α-neurotoxins is involved in binding to nAChRs, we have recently synthesized the fragments of Lynx1 central loop, including those with the disulfide between Cys residues introduced at N- and C-termini, some of them inhibiting muscle-type nAChR similarly to the whole-size water-soluble Lynx1 (ws-Lynx1). Literature shows that the main fragment interacting with TFPs is the C-loop of both nAChRs and acetylcholine binding proteins (AChBPs) while some ligand-binding capacity is preserved by analogs of this loop, for example, by high-affinity peptide HAP. Here we analyzed the structural organization of these peptide models of ligands and receptors and its role in binding. Thus, fragments of Lynx1 loop II, loop C from the Lymnaea stagnalis AChBP and HAP were synthesized in linear and Cys-cyclized forms and structurally (CD and NMR) and functionally (radioligand assay on Torpedo nAChR) characterized. Connecting the C- and N-termini by disulfide in the ws-Lynx1 fragment stabilized its conformation which became similar to the loop II within the (1)H-NMR structure of ws-Lynx1, the activity being higher than for starting linear fragment but lower than for peptide with free cysteines. Introduced disulfides did not considerably change the structure of HAP and of loop C fragments, the former preserving high affinity for α-bungarotoxin, while, surprisingly, no binding was detected with loop C and its analogs. MDPI 2020-12-22 /pmc/articles/PMC7821949/ /pubmed/33374963 http://dx.doi.org/10.3390/biom11010001 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Mineev, Konstantin S.
Kryukova, Elena V.
Kasheverov, Igor E.
Egorova, Natalia S.
Zhmak, Maxim N.
Ivanov, Igor A.
Senko, Dmitry A.
Feofanov, Alexey V.
Ignatova, Anastasia A.
Arseniev, Alexander S.
Utkin, Yuri N.
Tsetlin, Victor I.
Spatial Structure and Activity of Synthetic Fragments of Lynx1 and of Nicotinic Receptor Loop C Models
title Spatial Structure and Activity of Synthetic Fragments of Lynx1 and of Nicotinic Receptor Loop C Models
title_full Spatial Structure and Activity of Synthetic Fragments of Lynx1 and of Nicotinic Receptor Loop C Models
title_fullStr Spatial Structure and Activity of Synthetic Fragments of Lynx1 and of Nicotinic Receptor Loop C Models
title_full_unstemmed Spatial Structure and Activity of Synthetic Fragments of Lynx1 and of Nicotinic Receptor Loop C Models
title_short Spatial Structure and Activity of Synthetic Fragments of Lynx1 and of Nicotinic Receptor Loop C Models
title_sort spatial structure and activity of synthetic fragments of lynx1 and of nicotinic receptor loop c models
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7821949/
https://www.ncbi.nlm.nih.gov/pubmed/33374963
http://dx.doi.org/10.3390/biom11010001
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