Cargando…

A novel remitting leukodystrophy associated with a variant in FBP2

Leukodystrophies are genetic disorders of cerebral white matter that almost exclusively have a progressive disease course. We became aware of three members of a family with a disorder characterized by a sudden loss of all previously acquired abilities around 1 year of age followed by almost complete...

Descripción completa

Detalles Bibliográficos
Autores principales: Gizak, Agnieszka, Diegmann, Susann, Dreha-Kulaczewski, Steffi, Wiśniewski, Janusz, Duda, Przemysław, Ohlenbusch, Andreas, Huppke, Brenda, Henneke, Marco, Höhne, Wolfgang, Altmüller, Janine, Thiele, Holger, Nürnberg, Peter, Rakus, Dariusz, Gärtner, Jutta, Huppke, Peter
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8097510/
https://www.ncbi.nlm.nih.gov/pubmed/33977262
http://dx.doi.org/10.1093/braincomms/fcab036
_version_ 1783688354851717120
author Gizak, Agnieszka
Diegmann, Susann
Dreha-Kulaczewski, Steffi
Wiśniewski, Janusz
Duda, Przemysław
Ohlenbusch, Andreas
Huppke, Brenda
Henneke, Marco
Höhne, Wolfgang
Altmüller, Janine
Thiele, Holger
Nürnberg, Peter
Rakus, Dariusz
Gärtner, Jutta
Huppke, Peter
author_facet Gizak, Agnieszka
Diegmann, Susann
Dreha-Kulaczewski, Steffi
Wiśniewski, Janusz
Duda, Przemysław
Ohlenbusch, Andreas
Huppke, Brenda
Henneke, Marco
Höhne, Wolfgang
Altmüller, Janine
Thiele, Holger
Nürnberg, Peter
Rakus, Dariusz
Gärtner, Jutta
Huppke, Peter
author_sort Gizak, Agnieszka
collection PubMed
description Leukodystrophies are genetic disorders of cerebral white matter that almost exclusively have a progressive disease course. We became aware of three members of a family with a disorder characterized by a sudden loss of all previously acquired abilities around 1 year of age followed by almost complete recovery within 2 years. Cerebral MRI and myelin sensitive imaging showed a pronounced demyelination that progressed for several months despite signs of clinical improvement and was followed by remyelination. Exome sequencing did not-identify any mutations in known leukodystrophy genes but revealed a heterozygous variant in the FBP2 gene, c.343G>A, p. Val115Met, shared by the affected family members. Cerebral MRI of other family members demonstrated similar white matter abnormalities in all carriers of the variant in FBP2. The FBP2 gene codes for muscle fructose 1,6-bisphosphatase, an enzyme involved in gluconeogenesis that is highly expressed in brain tissue. Biochemical analysis showed that the variant has a dominant negative effect on enzymatic activity, substrate affinity, cooperativity and thermal stability. Moreover, it also affects the non-canonical functions of muscle fructose 1,6-bisphosphatase involved in mitochondrial protection and regulation of several nuclear processes. In patients’ fibroblasts, muscle fructose 1,6-bisphosphatase shows no colocalization with mitochondria and nuclei leading to increased reactive oxygen species production and a disturbed mitochondrial network. In conclusion, the results of this study indicate that the variant in FBP2 disturbs cerebral energy metabolism and is associated with a novel remitting leukodystrophy.
format Online
Article
Text
id pubmed-8097510
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-80975102021-05-10 A novel remitting leukodystrophy associated with a variant in FBP2 Gizak, Agnieszka Diegmann, Susann Dreha-Kulaczewski, Steffi Wiśniewski, Janusz Duda, Przemysław Ohlenbusch, Andreas Huppke, Brenda Henneke, Marco Höhne, Wolfgang Altmüller, Janine Thiele, Holger Nürnberg, Peter Rakus, Dariusz Gärtner, Jutta Huppke, Peter Brain Commun Original Article Leukodystrophies are genetic disorders of cerebral white matter that almost exclusively have a progressive disease course. We became aware of three members of a family with a disorder characterized by a sudden loss of all previously acquired abilities around 1 year of age followed by almost complete recovery within 2 years. Cerebral MRI and myelin sensitive imaging showed a pronounced demyelination that progressed for several months despite signs of clinical improvement and was followed by remyelination. Exome sequencing did not-identify any mutations in known leukodystrophy genes but revealed a heterozygous variant in the FBP2 gene, c.343G>A, p. Val115Met, shared by the affected family members. Cerebral MRI of other family members demonstrated similar white matter abnormalities in all carriers of the variant in FBP2. The FBP2 gene codes for muscle fructose 1,6-bisphosphatase, an enzyme involved in gluconeogenesis that is highly expressed in brain tissue. Biochemical analysis showed that the variant has a dominant negative effect on enzymatic activity, substrate affinity, cooperativity and thermal stability. Moreover, it also affects the non-canonical functions of muscle fructose 1,6-bisphosphatase involved in mitochondrial protection and regulation of several nuclear processes. In patients’ fibroblasts, muscle fructose 1,6-bisphosphatase shows no colocalization with mitochondria and nuclei leading to increased reactive oxygen species production and a disturbed mitochondrial network. In conclusion, the results of this study indicate that the variant in FBP2 disturbs cerebral energy metabolism and is associated with a novel remitting leukodystrophy. Oxford University Press 2021-03-11 /pmc/articles/PMC8097510/ /pubmed/33977262 http://dx.doi.org/10.1093/braincomms/fcab036 Text en © The Author(s) (2021). Published by Oxford University Press on behalf of the Guarantors of Brain. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
Gizak, Agnieszka
Diegmann, Susann
Dreha-Kulaczewski, Steffi
Wiśniewski, Janusz
Duda, Przemysław
Ohlenbusch, Andreas
Huppke, Brenda
Henneke, Marco
Höhne, Wolfgang
Altmüller, Janine
Thiele, Holger
Nürnberg, Peter
Rakus, Dariusz
Gärtner, Jutta
Huppke, Peter
A novel remitting leukodystrophy associated with a variant in FBP2
title A novel remitting leukodystrophy associated with a variant in FBP2
title_full A novel remitting leukodystrophy associated with a variant in FBP2
title_fullStr A novel remitting leukodystrophy associated with a variant in FBP2
title_full_unstemmed A novel remitting leukodystrophy associated with a variant in FBP2
title_short A novel remitting leukodystrophy associated with a variant in FBP2
title_sort novel remitting leukodystrophy associated with a variant in fbp2
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8097510/
https://www.ncbi.nlm.nih.gov/pubmed/33977262
http://dx.doi.org/10.1093/braincomms/fcab036
work_keys_str_mv AT gizakagnieszka anovelremittingleukodystrophyassociatedwithavariantinfbp2
AT diegmannsusann anovelremittingleukodystrophyassociatedwithavariantinfbp2
AT drehakulaczewskisteffi anovelremittingleukodystrophyassociatedwithavariantinfbp2
AT wisniewskijanusz anovelremittingleukodystrophyassociatedwithavariantinfbp2
AT dudaprzemysław anovelremittingleukodystrophyassociatedwithavariantinfbp2
AT ohlenbuschandreas anovelremittingleukodystrophyassociatedwithavariantinfbp2
AT huppkebrenda anovelremittingleukodystrophyassociatedwithavariantinfbp2
AT hennekemarco anovelremittingleukodystrophyassociatedwithavariantinfbp2
AT hohnewolfgang anovelremittingleukodystrophyassociatedwithavariantinfbp2
AT altmullerjanine anovelremittingleukodystrophyassociatedwithavariantinfbp2
AT thieleholger anovelremittingleukodystrophyassociatedwithavariantinfbp2
AT nurnbergpeter anovelremittingleukodystrophyassociatedwithavariantinfbp2
AT rakusdariusz anovelremittingleukodystrophyassociatedwithavariantinfbp2
AT gartnerjutta anovelremittingleukodystrophyassociatedwithavariantinfbp2
AT huppkepeter anovelremittingleukodystrophyassociatedwithavariantinfbp2
AT gizakagnieszka novelremittingleukodystrophyassociatedwithavariantinfbp2
AT diegmannsusann novelremittingleukodystrophyassociatedwithavariantinfbp2
AT drehakulaczewskisteffi novelremittingleukodystrophyassociatedwithavariantinfbp2
AT wisniewskijanusz novelremittingleukodystrophyassociatedwithavariantinfbp2
AT dudaprzemysław novelremittingleukodystrophyassociatedwithavariantinfbp2
AT ohlenbuschandreas novelremittingleukodystrophyassociatedwithavariantinfbp2
AT huppkebrenda novelremittingleukodystrophyassociatedwithavariantinfbp2
AT hennekemarco novelremittingleukodystrophyassociatedwithavariantinfbp2
AT hohnewolfgang novelremittingleukodystrophyassociatedwithavariantinfbp2
AT altmullerjanine novelremittingleukodystrophyassociatedwithavariantinfbp2
AT thieleholger novelremittingleukodystrophyassociatedwithavariantinfbp2
AT nurnbergpeter novelremittingleukodystrophyassociatedwithavariantinfbp2
AT rakusdariusz novelremittingleukodystrophyassociatedwithavariantinfbp2
AT gartnerjutta novelremittingleukodystrophyassociatedwithavariantinfbp2
AT huppkepeter novelremittingleukodystrophyassociatedwithavariantinfbp2