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Solution Structure of the Apo C-Terminal Domain of the Lethocerus F1 Troponin C Isoform

[Image: see text] Muscle contraction is activated by two distinct mechanisms. One depends on the calcium influx, and the other is calcium-independent and activated by mechanical stress. A prototypical example of stretch activation is observed in insect muscles. In Lethocerus, a model system ideally...

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Autores principales: De Nicola, Gian Felice, Martin, Stephen, Bullard, Belinda, Pastore, Annalisa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2010
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3388720/
https://www.ncbi.nlm.nih.gov/pubmed/20104876
http://dx.doi.org/10.1021/bi902094w
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author De Nicola, Gian Felice
Martin, Stephen
Bullard, Belinda
Pastore, Annalisa
author_facet De Nicola, Gian Felice
Martin, Stephen
Bullard, Belinda
Pastore, Annalisa
author_sort De Nicola, Gian Felice
collection PubMed
description [Image: see text] Muscle contraction is activated by two distinct mechanisms. One depends on the calcium influx, and the other is calcium-independent and activated by mechanical stress. A prototypical example of stretch activation is observed in insect muscles. In Lethocerus, a model system ideally suited for studying stretch activation, the two mechanisms seem to be under the control of different isoforms of troponin C (TnC), F1 and F2, which are responsible for stretch and calcium-dependent regulation, respectively. We have previously shown that F1 TnC is a typical collapsed dumbbell EF-hand protein that accommodates one calcium ion in its fourth EF-hand. When calcium loaded, the C-terminal domain of F1 TnC is in an open conformation which allows binding to troponin I. We have determined the solution structure of the isolated F1 TnC C-terminal domain in the absence of calcium and have compared it together with its dynamical properties with those of the calcium-loaded form. The domain is folded also in the absence of calcium and is in a closed conformation. Binding of a single calcium is sufficient to induce a modest but clear closed-to-open conformational transition and releases the conformational entropy observed in the calcium-free form. These results provide the first example of a TnC domain in which the presence of only one calcium ion is sufficient to induce a closed-to-open transition and clarify the role of calcium in stretch activation.
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spelling pubmed-33887202012-07-04 Solution Structure of the Apo C-Terminal Domain of the Lethocerus F1 Troponin C Isoform De Nicola, Gian Felice Martin, Stephen Bullard, Belinda Pastore, Annalisa Biochemistry [Image: see text] Muscle contraction is activated by two distinct mechanisms. One depends on the calcium influx, and the other is calcium-independent and activated by mechanical stress. A prototypical example of stretch activation is observed in insect muscles. In Lethocerus, a model system ideally suited for studying stretch activation, the two mechanisms seem to be under the control of different isoforms of troponin C (TnC), F1 and F2, which are responsible for stretch and calcium-dependent regulation, respectively. We have previously shown that F1 TnC is a typical collapsed dumbbell EF-hand protein that accommodates one calcium ion in its fourth EF-hand. When calcium loaded, the C-terminal domain of F1 TnC is in an open conformation which allows binding to troponin I. We have determined the solution structure of the isolated F1 TnC C-terminal domain in the absence of calcium and have compared it together with its dynamical properties with those of the calcium-loaded form. The domain is folded also in the absence of calcium and is in a closed conformation. Binding of a single calcium is sufficient to induce a modest but clear closed-to-open conformational transition and releases the conformational entropy observed in the calcium-free form. These results provide the first example of a TnC domain in which the presence of only one calcium ion is sufficient to induce a closed-to-open transition and clarify the role of calcium in stretch activation. American Chemical Society 2010-01-27 /pmc/articles/PMC3388720/ /pubmed/20104876 http://dx.doi.org/10.1021/bi902094w Text en Copyright © 2010 American Chemical Society http://pubs.acs.org This is an open-access article distributed under the ACS AuthorChoice Terms & Conditions. Any use of this article, must conform to the terms of that license which are available at http://pubs.acs.org.
spellingShingle De Nicola, Gian Felice
Martin, Stephen
Bullard, Belinda
Pastore, Annalisa
Solution Structure of the Apo C-Terminal Domain of the Lethocerus F1 Troponin C Isoform
title Solution Structure of the Apo C-Terminal Domain of the Lethocerus F1 Troponin C Isoform
title_full Solution Structure of the Apo C-Terminal Domain of the Lethocerus F1 Troponin C Isoform
title_fullStr Solution Structure of the Apo C-Terminal Domain of the Lethocerus F1 Troponin C Isoform
title_full_unstemmed Solution Structure of the Apo C-Terminal Domain of the Lethocerus F1 Troponin C Isoform
title_short Solution Structure of the Apo C-Terminal Domain of the Lethocerus F1 Troponin C Isoform
title_sort solution structure of the apo c-terminal domain of the lethocerus f1 troponin c isoform
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3388720/
https://www.ncbi.nlm.nih.gov/pubmed/20104876
http://dx.doi.org/10.1021/bi902094w
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