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Inhibition of calpain but not caspase activity by spectrin fragments

Calpains and caspases are ubiquitous cysteine proteases that are associated with a variety of cellular pathways. Calpains are involved in processes such as long term potentiation, cell motility and apoptosis, and have been shown to cleave non-erythroid (brain) α- and β-spectrin and erythroid β-spect...

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Autores principales: Rolius, Ramunas, Antoniou, Chloe, Nazarova, Lidia A., Kim, Stephen H., Cobb, Garrett, Gala, Pooja, Rajaram, Priyanka, Li, Qufei, Fung, Leslie W.-M.
Formato: Texto
Lenguaje:English
Publicado: SP Versita 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3074365/
https://www.ncbi.nlm.nih.gov/pubmed/20467904
http://dx.doi.org/10.2478/s11658-010-0015-3
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author Rolius, Ramunas
Antoniou, Chloe
Nazarova, Lidia A.
Kim, Stephen H.
Cobb, Garrett
Gala, Pooja
Rajaram, Priyanka
Li, Qufei
Fung, Leslie W.-M.
author_facet Rolius, Ramunas
Antoniou, Chloe
Nazarova, Lidia A.
Kim, Stephen H.
Cobb, Garrett
Gala, Pooja
Rajaram, Priyanka
Li, Qufei
Fung, Leslie W.-M.
author_sort Rolius, Ramunas
collection PubMed
description Calpains and caspases are ubiquitous cysteine proteases that are associated with a variety of cellular pathways. Calpains are involved in processes such as long term potentiation, cell motility and apoptosis, and have been shown to cleave non-erythroid (brain) α- and β-spectrin and erythroid β-spectrin. The cleavage of erythroid α-spectrin by calpain has not been reported. Caspases play an important role in the initiation and execution of apoptosis, and have been shown to cleave non-erythroid but not erythroid spectrin. We have studied the effect of spectrin fragments on calpain and caspase activities. The erythroid and non-erythroid spectrin fragments used were from the N-terminal region of α-spectrin, and C-terminal region of β-spectrin, both consisting of regions involved in spectrin tetramer formation. We observed that the all spectrin fragments exhibited a concentration-dependent inhibitory effect on calpain, but not caspase activity. It is clear that additional studies are warranted to determine the physiological significance of calpain inhibition by spectrin fragments. Our findings suggest that calpain activity is modulated by the presence of spectrin partial domains at the tetramerization site. It is not clear whether the inhibitory effect is substrate specific or is a general effect. Further studies of this inhibitory effect may lead to the identification and development of new therapeutic agents specifically for calpains, but not for caspases. Proteins/peptides with a coiled coil helical conformation should be studied for potential inhibitory effects on calpain activity.
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spelling pubmed-30743652011-04-12 Inhibition of calpain but not caspase activity by spectrin fragments Rolius, Ramunas Antoniou, Chloe Nazarova, Lidia A. Kim, Stephen H. Cobb, Garrett Gala, Pooja Rajaram, Priyanka Li, Qufei Fung, Leslie W.-M. Cell Mol Biol Lett Short Communication Calpains and caspases are ubiquitous cysteine proteases that are associated with a variety of cellular pathways. Calpains are involved in processes such as long term potentiation, cell motility and apoptosis, and have been shown to cleave non-erythroid (brain) α- and β-spectrin and erythroid β-spectrin. The cleavage of erythroid α-spectrin by calpain has not been reported. Caspases play an important role in the initiation and execution of apoptosis, and have been shown to cleave non-erythroid but not erythroid spectrin. We have studied the effect of spectrin fragments on calpain and caspase activities. The erythroid and non-erythroid spectrin fragments used were from the N-terminal region of α-spectrin, and C-terminal region of β-spectrin, both consisting of regions involved in spectrin tetramer formation. We observed that the all spectrin fragments exhibited a concentration-dependent inhibitory effect on calpain, but not caspase activity. It is clear that additional studies are warranted to determine the physiological significance of calpain inhibition by spectrin fragments. Our findings suggest that calpain activity is modulated by the presence of spectrin partial domains at the tetramerization site. It is not clear whether the inhibitory effect is substrate specific or is a general effect. Further studies of this inhibitory effect may lead to the identification and development of new therapeutic agents specifically for calpains, but not for caspases. Proteins/peptides with a coiled coil helical conformation should be studied for potential inhibitory effects on calpain activity. SP Versita 2010-05-14 /pmc/articles/PMC3074365/ /pubmed/20467904 http://dx.doi.org/10.2478/s11658-010-0015-3 Text en © © Versita Warsaw and Springer-Verlag Wien 2010
spellingShingle Short Communication
Rolius, Ramunas
Antoniou, Chloe
Nazarova, Lidia A.
Kim, Stephen H.
Cobb, Garrett
Gala, Pooja
Rajaram, Priyanka
Li, Qufei
Fung, Leslie W.-M.
Inhibition of calpain but not caspase activity by spectrin fragments
title Inhibition of calpain but not caspase activity by spectrin fragments
title_full Inhibition of calpain but not caspase activity by spectrin fragments
title_fullStr Inhibition of calpain but not caspase activity by spectrin fragments
title_full_unstemmed Inhibition of calpain but not caspase activity by spectrin fragments
title_short Inhibition of calpain but not caspase activity by spectrin fragments
title_sort inhibition of calpain but not caspase activity by spectrin fragments
topic Short Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3074365/
https://www.ncbi.nlm.nih.gov/pubmed/20467904
http://dx.doi.org/10.2478/s11658-010-0015-3
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