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Measurement of Calcium Dissociation Rates from Troponin C in Rigor Skeletal Myofibrils

Ca2+ dissociation from the regulatory domain of troponin C may influence the rate of striated muscle relaxation. However, Ca(2+) dissociation from troponin C has not been measured within the geometric and stoichiometric constraints of the muscle fiber. Here we report the rates of Ca(2+) dissociation...

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Autores principales: Little, Sean C., Tikunova, Svetlana B., Norman, Catalina, Swartz, Darl R., Davis, Jonathan P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Research Foundation 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3190119/
https://www.ncbi.nlm.nih.gov/pubmed/22013424
http://dx.doi.org/10.3389/fphys.2011.00070
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author Little, Sean C.
Tikunova, Svetlana B.
Norman, Catalina
Swartz, Darl R.
Davis, Jonathan P.
author_facet Little, Sean C.
Tikunova, Svetlana B.
Norman, Catalina
Swartz, Darl R.
Davis, Jonathan P.
author_sort Little, Sean C.
collection PubMed
description Ca2+ dissociation from the regulatory domain of troponin C may influence the rate of striated muscle relaxation. However, Ca(2+) dissociation from troponin C has not been measured within the geometric and stoichiometric constraints of the muscle fiber. Here we report the rates of Ca(2+) dissociation from the N-terminal regulatory and C-terminal structural domains of fluorescent troponin C constructs reconstituted into rabbit rigor psoas myofibrils using stopped-flow technology. Chicken skeletal troponin C fluorescently labeled at Cys 101, troponin C(IAEDANS), reported Ca(2+) dissociation exclusively from the structural domain of troponin C at ∼0.37, 0.06, and 0.07/s in isolation, in the presence of troponin I and in myofibrils at 15°C, respectively. Ca(2+) dissociation from the regulatory domain was observed utilizing fluorescently labeled troponin C containing the T54C and C101S mutations. Troponin [Formula: see text] reported Ca(2+) dissociation exclusively from the regulatory domain of troponin C at >1000, 8.8, and 15/s in isolation, in the presence of troponin I and in myofibrils at 15°C, respectively. Interestingly, troponin [Formula: see text] reported a biphasic fluorescence change upon Ca(2+) dissociation from the N- and C-terminal domains of troponin C with rates that were similar to those reported by troponin [Formula: see text] and troponin C(IAEDANS) at all levels of the troponin C systems. Furthermore, the rate of Ca(2+) dissociation from troponin C in the myofibrils was similar to the rate of Ca(2+) dissociation measured from the troponin C-troponin I complexes. Since the rate of Ca(2+) dissociation from the regulatory domain of TnC in myofibrils is similar to the rate of skeletal muscle relaxation, Ca(2+) dissociation from troponin C may influence relaxation.
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spelling pubmed-31901192011-10-19 Measurement of Calcium Dissociation Rates from Troponin C in Rigor Skeletal Myofibrils Little, Sean C. Tikunova, Svetlana B. Norman, Catalina Swartz, Darl R. Davis, Jonathan P. Front Physiol Physiology Ca2+ dissociation from the regulatory domain of troponin C may influence the rate of striated muscle relaxation. However, Ca(2+) dissociation from troponin C has not been measured within the geometric and stoichiometric constraints of the muscle fiber. Here we report the rates of Ca(2+) dissociation from the N-terminal regulatory and C-terminal structural domains of fluorescent troponin C constructs reconstituted into rabbit rigor psoas myofibrils using stopped-flow technology. Chicken skeletal troponin C fluorescently labeled at Cys 101, troponin C(IAEDANS), reported Ca(2+) dissociation exclusively from the structural domain of troponin C at ∼0.37, 0.06, and 0.07/s in isolation, in the presence of troponin I and in myofibrils at 15°C, respectively. Ca(2+) dissociation from the regulatory domain was observed utilizing fluorescently labeled troponin C containing the T54C and C101S mutations. Troponin [Formula: see text] reported Ca(2+) dissociation exclusively from the regulatory domain of troponin C at >1000, 8.8, and 15/s in isolation, in the presence of troponin I and in myofibrils at 15°C, respectively. Interestingly, troponin [Formula: see text] reported a biphasic fluorescence change upon Ca(2+) dissociation from the N- and C-terminal domains of troponin C with rates that were similar to those reported by troponin [Formula: see text] and troponin C(IAEDANS) at all levels of the troponin C systems. Furthermore, the rate of Ca(2+) dissociation from troponin C in the myofibrils was similar to the rate of Ca(2+) dissociation measured from the troponin C-troponin I complexes. Since the rate of Ca(2+) dissociation from the regulatory domain of TnC in myofibrils is similar to the rate of skeletal muscle relaxation, Ca(2+) dissociation from troponin C may influence relaxation. Frontiers Research Foundation 2011-10-11 /pmc/articles/PMC3190119/ /pubmed/22013424 http://dx.doi.org/10.3389/fphys.2011.00070 Text en Copyright © 2011 Little, Tikunova, Norman, Swartz and Davis. http://www.frontiersin.org/licenseagreement This is an open-access article subject to a non-exclusive license between the authors and Frontiers Media SA, which permits use, distribution and reproduction in other forums, provided the original authors and source are credited and other Frontiers conditions are complied with.
spellingShingle Physiology
Little, Sean C.
Tikunova, Svetlana B.
Norman, Catalina
Swartz, Darl R.
Davis, Jonathan P.
Measurement of Calcium Dissociation Rates from Troponin C in Rigor Skeletal Myofibrils
title Measurement of Calcium Dissociation Rates from Troponin C in Rigor Skeletal Myofibrils
title_full Measurement of Calcium Dissociation Rates from Troponin C in Rigor Skeletal Myofibrils
title_fullStr Measurement of Calcium Dissociation Rates from Troponin C in Rigor Skeletal Myofibrils
title_full_unstemmed Measurement of Calcium Dissociation Rates from Troponin C in Rigor Skeletal Myofibrils
title_short Measurement of Calcium Dissociation Rates from Troponin C in Rigor Skeletal Myofibrils
title_sort measurement of calcium dissociation rates from troponin c in rigor skeletal myofibrils
topic Physiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3190119/
https://www.ncbi.nlm.nih.gov/pubmed/22013424
http://dx.doi.org/10.3389/fphys.2011.00070
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