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Relative Stability of Human Centrins and Its Relationship to Calcium Binding

[Image: see text] Centrins are calcium binding proteins that belong to the EF-hand superfamily with diverse biological functions. Herein we present the first systematic study that establishes the relative stability of related centrins via complementary biophysical techniques. Our results define the...

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Autores principales: Pastrana-Ríos, Belinda, Reyes, Myrna, De Orbeta, Jessica, Meza, Verónica, Narváez, Daniel, Gómez, Ana María, Rodríguez Nassif, Aslin, Almodovar, Ruth, Díaz Casas, Adalberto, Robles, José, Ortiz, Ana María, Irizarry, Lizbeth, Campbell, Melissa, Colón, Mara
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2013
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3597381/
https://www.ncbi.nlm.nih.gov/pubmed/23346931
http://dx.doi.org/10.1021/bi301417z
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author Pastrana-Ríos, Belinda
Reyes, Myrna
De Orbeta, Jessica
Meza, Verónica
Narváez, Daniel
Gómez, Ana María
Rodríguez Nassif, Aslin
Almodovar, Ruth
Díaz Casas, Adalberto
Robles, José
Ortiz, Ana María
Irizarry, Lizbeth
Campbell, Melissa
Colón, Mara
author_facet Pastrana-Ríos, Belinda
Reyes, Myrna
De Orbeta, Jessica
Meza, Verónica
Narváez, Daniel
Gómez, Ana María
Rodríguez Nassif, Aslin
Almodovar, Ruth
Díaz Casas, Adalberto
Robles, José
Ortiz, Ana María
Irizarry, Lizbeth
Campbell, Melissa
Colón, Mara
author_sort Pastrana-Ríos, Belinda
collection PubMed
description [Image: see text] Centrins are calcium binding proteins that belong to the EF-hand superfamily with diverse biological functions. Herein we present the first systematic study that establishes the relative stability of related centrins via complementary biophysical techniques. Our results define the stepwise molecular behavior of human centrins by two-dimensional infrared (2D IR) correlation spectroscopy, the change in heat capacity and enthalpy of denaturation by differential scanning calorimetry, and the relative stability of the helical regions of centrins by circular dichroism. More importantly, 2D IR correlation spectroscopy provides unique information about the similarities and differences in dynamics between these related proteins. The thermally induced molecular behavior of human centrins can be used to predict biological target interactions that have a relative dependence on calcium affinity. This information is essential for understanding why certain isoforms may be used to rescue a phenotype and therefore also for explaining the different functions these proteins may have in vivo. Furthermore, this comparative approach can be applied to the study of recombinant therapeutic protein candidates for the treatment of disease states.
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spelling pubmed-35973812013-03-15 Relative Stability of Human Centrins and Its Relationship to Calcium Binding Pastrana-Ríos, Belinda Reyes, Myrna De Orbeta, Jessica Meza, Verónica Narváez, Daniel Gómez, Ana María Rodríguez Nassif, Aslin Almodovar, Ruth Díaz Casas, Adalberto Robles, José Ortiz, Ana María Irizarry, Lizbeth Campbell, Melissa Colón, Mara Biochemistry [Image: see text] Centrins are calcium binding proteins that belong to the EF-hand superfamily with diverse biological functions. Herein we present the first systematic study that establishes the relative stability of related centrins via complementary biophysical techniques. Our results define the stepwise molecular behavior of human centrins by two-dimensional infrared (2D IR) correlation spectroscopy, the change in heat capacity and enthalpy of denaturation by differential scanning calorimetry, and the relative stability of the helical regions of centrins by circular dichroism. More importantly, 2D IR correlation spectroscopy provides unique information about the similarities and differences in dynamics between these related proteins. The thermally induced molecular behavior of human centrins can be used to predict biological target interactions that have a relative dependence on calcium affinity. This information is essential for understanding why certain isoforms may be used to rescue a phenotype and therefore also for explaining the different functions these proteins may have in vivo. Furthermore, this comparative approach can be applied to the study of recombinant therapeutic protein candidates for the treatment of disease states. American Chemical Society 2013-01-24 2013-02-19 /pmc/articles/PMC3597381/ /pubmed/23346931 http://dx.doi.org/10.1021/bi301417z Text en Copyright © 2013 American Chemical Society
spellingShingle Pastrana-Ríos, Belinda
Reyes, Myrna
De Orbeta, Jessica
Meza, Verónica
Narváez, Daniel
Gómez, Ana María
Rodríguez Nassif, Aslin
Almodovar, Ruth
Díaz Casas, Adalberto
Robles, José
Ortiz, Ana María
Irizarry, Lizbeth
Campbell, Melissa
Colón, Mara
Relative Stability of Human Centrins and Its Relationship to Calcium Binding
title Relative Stability of Human Centrins and Its Relationship to Calcium Binding
title_full Relative Stability of Human Centrins and Its Relationship to Calcium Binding
title_fullStr Relative Stability of Human Centrins and Its Relationship to Calcium Binding
title_full_unstemmed Relative Stability of Human Centrins and Its Relationship to Calcium Binding
title_short Relative Stability of Human Centrins and Its Relationship to Calcium Binding
title_sort relative stability of human centrins and its relationship to calcium binding
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3597381/
https://www.ncbi.nlm.nih.gov/pubmed/23346931
http://dx.doi.org/10.1021/bi301417z
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