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Loss of Metal Ions, Disulfide Reduction and Mutations Related to Familial ALS Promote Formation of Amyloid-Like Aggregates from Superoxide Dismutase

Mutations in the gene encoding Cu-Zn superoxide dismutase (SOD1) are one of the causes of familial amyotrophic lateral sclerosis (FALS). Fibrillar inclusions containing SOD1 and SOD1 inclusions that bind the amyloid-specific dye thioflavin S have been found in neurons of transgenic mice expressing m...

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Autores principales: Oztug Durer, Zeynep A., Cohlberg, Jeffrey A., Dinh, Phong, Padua, Shelby, Ehrenclou, Krista, Downes, Sean, Tan, James K., Nakano, Yoko, Bowman, Christopher J., Hoskins, Jessica L., Kwon, Chuhee, Mason, Andrew Z., Rodriguez, Jorge A., Doucette, Peter A., Shaw, Bryan F., Valentine, Joan Selverstone
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2659422/
https://www.ncbi.nlm.nih.gov/pubmed/19325915
http://dx.doi.org/10.1371/journal.pone.0005004
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author Oztug Durer, Zeynep A.
Cohlberg, Jeffrey A.
Dinh, Phong
Padua, Shelby
Ehrenclou, Krista
Downes, Sean
Tan, James K.
Nakano, Yoko
Bowman, Christopher J.
Hoskins, Jessica L.
Kwon, Chuhee
Mason, Andrew Z.
Rodriguez, Jorge A.
Doucette, Peter A.
Shaw, Bryan F.
Valentine, Joan Selverstone
author_facet Oztug Durer, Zeynep A.
Cohlberg, Jeffrey A.
Dinh, Phong
Padua, Shelby
Ehrenclou, Krista
Downes, Sean
Tan, James K.
Nakano, Yoko
Bowman, Christopher J.
Hoskins, Jessica L.
Kwon, Chuhee
Mason, Andrew Z.
Rodriguez, Jorge A.
Doucette, Peter A.
Shaw, Bryan F.
Valentine, Joan Selverstone
author_sort Oztug Durer, Zeynep A.
collection PubMed
description Mutations in the gene encoding Cu-Zn superoxide dismutase (SOD1) are one of the causes of familial amyotrophic lateral sclerosis (FALS). Fibrillar inclusions containing SOD1 and SOD1 inclusions that bind the amyloid-specific dye thioflavin S have been found in neurons of transgenic mice expressing mutant SOD1. Therefore, the formation of amyloid fibrils from human SOD1 was investigated. When agitated at acidic pH in the presence of low concentrations of guanidine or acetonitrile, metalated SOD1 formed fibrillar material which bound both thioflavin T and Congo red and had circular dichroism and infrared spectra characteristic of amyloid. While metalated SOD1 did not form amyloid-like aggregates at neutral pH, either removing metals from SOD1 with its intramolecular disulfide bond intact or reducing the intramolecular disulfide bond of metalated SOD1 was sufficient to promote formation of these aggregates. SOD1 formed amyloid-like aggregates both with and without intermolecular disulfide bonds, depending on the incubation conditions, and a mutant SOD1 lacking free sulfhydryl groups (AS-SOD1) formed amyloid-like aggregates at neutral pH under reducing conditions. ALS mutations enhanced the ability of disulfide-reduced SOD1 to form amyloid-like aggregates, and apo-AS-SOD1 formed amyloid-like aggregates at pH 7 only when an ALS mutation was also present. These results indicate that some mutations related to ALS promote formation of amyloid-like aggregates by facilitating the loss of metals and/or by making the intramolecular disulfide bond more susceptible to reduction, thus allowing the conversion of SOD1 to a form that aggregates to form resembling amyloid. Furthermore, the occurrence of amyloid-like aggregates per se does not depend on forming intermolecular disulfide bonds, and multiple forms of such aggregates can be produced from SOD1.
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spelling pubmed-26594222009-03-27 Loss of Metal Ions, Disulfide Reduction and Mutations Related to Familial ALS Promote Formation of Amyloid-Like Aggregates from Superoxide Dismutase Oztug Durer, Zeynep A. Cohlberg, Jeffrey A. Dinh, Phong Padua, Shelby Ehrenclou, Krista Downes, Sean Tan, James K. Nakano, Yoko Bowman, Christopher J. Hoskins, Jessica L. Kwon, Chuhee Mason, Andrew Z. Rodriguez, Jorge A. Doucette, Peter A. Shaw, Bryan F. Valentine, Joan Selverstone PLoS One Research Article Mutations in the gene encoding Cu-Zn superoxide dismutase (SOD1) are one of the causes of familial amyotrophic lateral sclerosis (FALS). Fibrillar inclusions containing SOD1 and SOD1 inclusions that bind the amyloid-specific dye thioflavin S have been found in neurons of transgenic mice expressing mutant SOD1. Therefore, the formation of amyloid fibrils from human SOD1 was investigated. When agitated at acidic pH in the presence of low concentrations of guanidine or acetonitrile, metalated SOD1 formed fibrillar material which bound both thioflavin T and Congo red and had circular dichroism and infrared spectra characteristic of amyloid. While metalated SOD1 did not form amyloid-like aggregates at neutral pH, either removing metals from SOD1 with its intramolecular disulfide bond intact or reducing the intramolecular disulfide bond of metalated SOD1 was sufficient to promote formation of these aggregates. SOD1 formed amyloid-like aggregates both with and without intermolecular disulfide bonds, depending on the incubation conditions, and a mutant SOD1 lacking free sulfhydryl groups (AS-SOD1) formed amyloid-like aggregates at neutral pH under reducing conditions. ALS mutations enhanced the ability of disulfide-reduced SOD1 to form amyloid-like aggregates, and apo-AS-SOD1 formed amyloid-like aggregates at pH 7 only when an ALS mutation was also present. These results indicate that some mutations related to ALS promote formation of amyloid-like aggregates by facilitating the loss of metals and/or by making the intramolecular disulfide bond more susceptible to reduction, thus allowing the conversion of SOD1 to a form that aggregates to form resembling amyloid. Furthermore, the occurrence of amyloid-like aggregates per se does not depend on forming intermolecular disulfide bonds, and multiple forms of such aggregates can be produced from SOD1. Public Library of Science 2009-03-27 /pmc/articles/PMC2659422/ /pubmed/19325915 http://dx.doi.org/10.1371/journal.pone.0005004 Text en Oztug Durer et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Oztug Durer, Zeynep A.
Cohlberg, Jeffrey A.
Dinh, Phong
Padua, Shelby
Ehrenclou, Krista
Downes, Sean
Tan, James K.
Nakano, Yoko
Bowman, Christopher J.
Hoskins, Jessica L.
Kwon, Chuhee
Mason, Andrew Z.
Rodriguez, Jorge A.
Doucette, Peter A.
Shaw, Bryan F.
Valentine, Joan Selverstone
Loss of Metal Ions, Disulfide Reduction and Mutations Related to Familial ALS Promote Formation of Amyloid-Like Aggregates from Superoxide Dismutase
title Loss of Metal Ions, Disulfide Reduction and Mutations Related to Familial ALS Promote Formation of Amyloid-Like Aggregates from Superoxide Dismutase
title_full Loss of Metal Ions, Disulfide Reduction and Mutations Related to Familial ALS Promote Formation of Amyloid-Like Aggregates from Superoxide Dismutase
title_fullStr Loss of Metal Ions, Disulfide Reduction and Mutations Related to Familial ALS Promote Formation of Amyloid-Like Aggregates from Superoxide Dismutase
title_full_unstemmed Loss of Metal Ions, Disulfide Reduction and Mutations Related to Familial ALS Promote Formation of Amyloid-Like Aggregates from Superoxide Dismutase
title_short Loss of Metal Ions, Disulfide Reduction and Mutations Related to Familial ALS Promote Formation of Amyloid-Like Aggregates from Superoxide Dismutase
title_sort loss of metal ions, disulfide reduction and mutations related to familial als promote formation of amyloid-like aggregates from superoxide dismutase
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2659422/
https://www.ncbi.nlm.nih.gov/pubmed/19325915
http://dx.doi.org/10.1371/journal.pone.0005004
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