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Novel SCARB2 mutation in action myoclonus-renal failure syndrome and evaluation of SCARB2 mutations in isolated AMRF features

BACKGROUND: Action myoclonus-renal failure syndrome is a hereditary form of progressive myoclonus epilepsy associated with renal failure. It is considered to be an autosomal-recessive disease related to loss-of-function mutations in SCARB2. We studied a German AMRF family, additionally showing signs...

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Autores principales: Hopfner, Franziska, Schormair, Barbara, Knauf, Franziska, Berthele, Achim, Tölle, Thomas R, Baron, Ralf, Maier, Christoph, Treede, Rolf-Detlef, Binder, Andreas, Sommer, Claudia, Maihöfner, Christian, Kunz, Wolfram, Zimprich, Friedrich, Heemann, Uwe, Pfeufer, Arne, Näbauer, Michael, Kääb, Stefan, Nowak, Barbara, Gieger, Christian, Lichtner, Peter, Trenkwalder, Claudia, Oexle, Konrad, Winkelmann, Juliane
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3222607/
https://www.ncbi.nlm.nih.gov/pubmed/22032306
http://dx.doi.org/10.1186/1471-2377-11-134
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author Hopfner, Franziska
Schormair, Barbara
Knauf, Franziska
Berthele, Achim
Tölle, Thomas R
Baron, Ralf
Maier, Christoph
Treede, Rolf-Detlef
Binder, Andreas
Sommer, Claudia
Maihöfner, Christian
Kunz, Wolfram
Zimprich, Friedrich
Heemann, Uwe
Pfeufer, Arne
Näbauer, Michael
Kääb, Stefan
Nowak, Barbara
Gieger, Christian
Lichtner, Peter
Trenkwalder, Claudia
Oexle, Konrad
Winkelmann, Juliane
author_facet Hopfner, Franziska
Schormair, Barbara
Knauf, Franziska
Berthele, Achim
Tölle, Thomas R
Baron, Ralf
Maier, Christoph
Treede, Rolf-Detlef
Binder, Andreas
Sommer, Claudia
Maihöfner, Christian
Kunz, Wolfram
Zimprich, Friedrich
Heemann, Uwe
Pfeufer, Arne
Näbauer, Michael
Kääb, Stefan
Nowak, Barbara
Gieger, Christian
Lichtner, Peter
Trenkwalder, Claudia
Oexle, Konrad
Winkelmann, Juliane
author_sort Hopfner, Franziska
collection PubMed
description BACKGROUND: Action myoclonus-renal failure syndrome is a hereditary form of progressive myoclonus epilepsy associated with renal failure. It is considered to be an autosomal-recessive disease related to loss-of-function mutations in SCARB2. We studied a German AMRF family, additionally showing signs of demyelinating polyneuropathy and dilated cardiomyopathy. To test the hypothesis whether isolated appearance of individual AMRF syndrome features could be related to heterozygote SCARB2 mutations, we screened for SCARB2 mutations in unrelated patients showing isolated AMRF features. METHODS: In the AMRF family all exons of SCARB2 were analyzed by Sanger sequencing. The mutation screening of unrelated patients with isolated AMRF features affected by either epilepsy (n = 103, progressive myoclonus epilepsy or generalized epilepsy), demyelinating polyneuropathy (n = 103), renal failure (n = 192) or dilated cardiomyopathy (n = 85) was performed as high resolution melting curve analysis of the SCARB2 exons. RESULTS: A novel homozygous 1 bp deletion (c.111delC) in SCARB2 was found by sequencing three affected homozygous siblings of the affected family. A heterozygous sister showed generalized seizures and reduction of nerve conduction velocity in her legs. No mutations were found in the epilepsy, renal failure or dilated cardiomyopathy samples. In the polyneuropathy sample two individuals with demyelinating disease were found to be carriers of a SCARB2 frameshift mutation (c.666delCCTTA). CONCLUSIONS: Our findings indicate that demyelinating polyneuropathy and dilated cardiomyopathy are part of the action myoclonus-renal failure syndrome. Moreover, they raise the possibility that in rare cases heterozygous SCARB2 mutations may be associated with PNP features.
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spelling pubmed-32226072011-11-23 Novel SCARB2 mutation in action myoclonus-renal failure syndrome and evaluation of SCARB2 mutations in isolated AMRF features Hopfner, Franziska Schormair, Barbara Knauf, Franziska Berthele, Achim Tölle, Thomas R Baron, Ralf Maier, Christoph Treede, Rolf-Detlef Binder, Andreas Sommer, Claudia Maihöfner, Christian Kunz, Wolfram Zimprich, Friedrich Heemann, Uwe Pfeufer, Arne Näbauer, Michael Kääb, Stefan Nowak, Barbara Gieger, Christian Lichtner, Peter Trenkwalder, Claudia Oexle, Konrad Winkelmann, Juliane BMC Neurol Research Article BACKGROUND: Action myoclonus-renal failure syndrome is a hereditary form of progressive myoclonus epilepsy associated with renal failure. It is considered to be an autosomal-recessive disease related to loss-of-function mutations in SCARB2. We studied a German AMRF family, additionally showing signs of demyelinating polyneuropathy and dilated cardiomyopathy. To test the hypothesis whether isolated appearance of individual AMRF syndrome features could be related to heterozygote SCARB2 mutations, we screened for SCARB2 mutations in unrelated patients showing isolated AMRF features. METHODS: In the AMRF family all exons of SCARB2 were analyzed by Sanger sequencing. The mutation screening of unrelated patients with isolated AMRF features affected by either epilepsy (n = 103, progressive myoclonus epilepsy or generalized epilepsy), demyelinating polyneuropathy (n = 103), renal failure (n = 192) or dilated cardiomyopathy (n = 85) was performed as high resolution melting curve analysis of the SCARB2 exons. RESULTS: A novel homozygous 1 bp deletion (c.111delC) in SCARB2 was found by sequencing three affected homozygous siblings of the affected family. A heterozygous sister showed generalized seizures and reduction of nerve conduction velocity in her legs. No mutations were found in the epilepsy, renal failure or dilated cardiomyopathy samples. In the polyneuropathy sample two individuals with demyelinating disease were found to be carriers of a SCARB2 frameshift mutation (c.666delCCTTA). CONCLUSIONS: Our findings indicate that demyelinating polyneuropathy and dilated cardiomyopathy are part of the action myoclonus-renal failure syndrome. Moreover, they raise the possibility that in rare cases heterozygous SCARB2 mutations may be associated with PNP features. BioMed Central 2011-10-27 /pmc/articles/PMC3222607/ /pubmed/22032306 http://dx.doi.org/10.1186/1471-2377-11-134 Text en Copyright ©2011 Hopfner et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Hopfner, Franziska
Schormair, Barbara
Knauf, Franziska
Berthele, Achim
Tölle, Thomas R
Baron, Ralf
Maier, Christoph
Treede, Rolf-Detlef
Binder, Andreas
Sommer, Claudia
Maihöfner, Christian
Kunz, Wolfram
Zimprich, Friedrich
Heemann, Uwe
Pfeufer, Arne
Näbauer, Michael
Kääb, Stefan
Nowak, Barbara
Gieger, Christian
Lichtner, Peter
Trenkwalder, Claudia
Oexle, Konrad
Winkelmann, Juliane
Novel SCARB2 mutation in action myoclonus-renal failure syndrome and evaluation of SCARB2 mutations in isolated AMRF features
title Novel SCARB2 mutation in action myoclonus-renal failure syndrome and evaluation of SCARB2 mutations in isolated AMRF features
title_full Novel SCARB2 mutation in action myoclonus-renal failure syndrome and evaluation of SCARB2 mutations in isolated AMRF features
title_fullStr Novel SCARB2 mutation in action myoclonus-renal failure syndrome and evaluation of SCARB2 mutations in isolated AMRF features
title_full_unstemmed Novel SCARB2 mutation in action myoclonus-renal failure syndrome and evaluation of SCARB2 mutations in isolated AMRF features
title_short Novel SCARB2 mutation in action myoclonus-renal failure syndrome and evaluation of SCARB2 mutations in isolated AMRF features
title_sort novel scarb2 mutation in action myoclonus-renal failure syndrome and evaluation of scarb2 mutations in isolated amrf features
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3222607/
https://www.ncbi.nlm.nih.gov/pubmed/22032306
http://dx.doi.org/10.1186/1471-2377-11-134
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