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De Novo and Inherited Variants in GBF1 are Associated with Axonal Neuropathy Caused by Golgi Fragmentation

Distal hereditary motor neuropathies (HMNs) and axonal Charcot-Marie-Tooth neuropathy (CMT2) are clinically and genetically heterogeneous diseases characterized primarily by motor neuron degeneration and distal weakness. The genetic cause for about half of the individuals affected by HMN/CMT2 remain...

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Autores principales: Mendoza-Ferreira, Natalia, Karakaya, Mert, Cengiz, Nur, Beijer, Danique, Brigatti, Karlla W., Gonzaga-Jauregui, Claudia, Fuhrmann, Nico, Hölker, Irmgard, Thelen, Maximilian P., Zetzsche, Sebastian, Rombo, Roman, Puffenberger, Erik G., De Jonghe, Peter, Deconinck, Tine, Zuchner, Stephan, Strauss, Kevin A., Carson, Vincent, Schrank, Bertold, Wunderlich, Gilbert, Baets, Jonathan, Wirth, Brunhilde
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7491385/
https://www.ncbi.nlm.nih.gov/pubmed/32937143
http://dx.doi.org/10.1016/j.ajhg.2020.08.018
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author Mendoza-Ferreira, Natalia
Karakaya, Mert
Cengiz, Nur
Beijer, Danique
Brigatti, Karlla W.
Gonzaga-Jauregui, Claudia
Fuhrmann, Nico
Hölker, Irmgard
Thelen, Maximilian P.
Zetzsche, Sebastian
Rombo, Roman
Puffenberger, Erik G.
De Jonghe, Peter
Deconinck, Tine
Zuchner, Stephan
Strauss, Kevin A.
Carson, Vincent
Schrank, Bertold
Wunderlich, Gilbert
Baets, Jonathan
Wirth, Brunhilde
author_facet Mendoza-Ferreira, Natalia
Karakaya, Mert
Cengiz, Nur
Beijer, Danique
Brigatti, Karlla W.
Gonzaga-Jauregui, Claudia
Fuhrmann, Nico
Hölker, Irmgard
Thelen, Maximilian P.
Zetzsche, Sebastian
Rombo, Roman
Puffenberger, Erik G.
De Jonghe, Peter
Deconinck, Tine
Zuchner, Stephan
Strauss, Kevin A.
Carson, Vincent
Schrank, Bertold
Wunderlich, Gilbert
Baets, Jonathan
Wirth, Brunhilde
author_sort Mendoza-Ferreira, Natalia
collection PubMed
description Distal hereditary motor neuropathies (HMNs) and axonal Charcot-Marie-Tooth neuropathy (CMT2) are clinically and genetically heterogeneous diseases characterized primarily by motor neuron degeneration and distal weakness. The genetic cause for about half of the individuals affected by HMN/CMT2 remains unknown. Here, we report the identification of pathogenic variants in GBF1 (Golgi brefeldin A-resistant guanine nucleotide exchange factor 1) in four unrelated families with individuals affected by sporadic or dominant HMN/CMT2. Genomic sequencing analyses in seven affected individuals uncovered four distinct heterozygous GBF1 variants, two of which occurred de novo. Other known HMN/CMT2-implicated genes were excluded. Affected individuals show HMN/CMT2 with slowly progressive distal muscle weakness and musculoskeletal deformities. Electrophysiological studies confirmed axonal damage with chronic neurogenic changes. Three individuals had additional distal sensory loss. GBF1 encodes a guanine-nucleotide exchange factor that facilitates the activation of members of the ARF (ADP-ribosylation factor) family of small GTPases. GBF1 is mainly involved in the formation of coatomer protein complex (COPI) vesicles, maintenance and function of the Golgi apparatus, and mitochondria migration and positioning. We demonstrate that GBF1 is present in mouse spinal cord and muscle tissues and is particularly abundant in neuropathologically relevant sites, such as the motor neuron and the growth cone. Consistent with the described role of GBF1 in Golgi function and maintenance, we observed marked increase in Golgi fragmentation in primary fibroblasts derived from all affected individuals in this study. Our results not only reinforce the existing link between Golgi fragmentation and neurodegeneration but also demonstrate that pathogenic variants in GBF1 are associated with HMN/CMT2.
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spelling pubmed-74913852020-09-16 De Novo and Inherited Variants in GBF1 are Associated with Axonal Neuropathy Caused by Golgi Fragmentation Mendoza-Ferreira, Natalia Karakaya, Mert Cengiz, Nur Beijer, Danique Brigatti, Karlla W. Gonzaga-Jauregui, Claudia Fuhrmann, Nico Hölker, Irmgard Thelen, Maximilian P. Zetzsche, Sebastian Rombo, Roman Puffenberger, Erik G. De Jonghe, Peter Deconinck, Tine Zuchner, Stephan Strauss, Kevin A. Carson, Vincent Schrank, Bertold Wunderlich, Gilbert Baets, Jonathan Wirth, Brunhilde Am J Hum Genet Report Distal hereditary motor neuropathies (HMNs) and axonal Charcot-Marie-Tooth neuropathy (CMT2) are clinically and genetically heterogeneous diseases characterized primarily by motor neuron degeneration and distal weakness. The genetic cause for about half of the individuals affected by HMN/CMT2 remains unknown. Here, we report the identification of pathogenic variants in GBF1 (Golgi brefeldin A-resistant guanine nucleotide exchange factor 1) in four unrelated families with individuals affected by sporadic or dominant HMN/CMT2. Genomic sequencing analyses in seven affected individuals uncovered four distinct heterozygous GBF1 variants, two of which occurred de novo. Other known HMN/CMT2-implicated genes were excluded. Affected individuals show HMN/CMT2 with slowly progressive distal muscle weakness and musculoskeletal deformities. Electrophysiological studies confirmed axonal damage with chronic neurogenic changes. Three individuals had additional distal sensory loss. GBF1 encodes a guanine-nucleotide exchange factor that facilitates the activation of members of the ARF (ADP-ribosylation factor) family of small GTPases. GBF1 is mainly involved in the formation of coatomer protein complex (COPI) vesicles, maintenance and function of the Golgi apparatus, and mitochondria migration and positioning. We demonstrate that GBF1 is present in mouse spinal cord and muscle tissues and is particularly abundant in neuropathologically relevant sites, such as the motor neuron and the growth cone. Consistent with the described role of GBF1 in Golgi function and maintenance, we observed marked increase in Golgi fragmentation in primary fibroblasts derived from all affected individuals in this study. Our results not only reinforce the existing link between Golgi fragmentation and neurodegeneration but also demonstrate that pathogenic variants in GBF1 are associated with HMN/CMT2. Elsevier 2020-10-01 2020-09-15 /pmc/articles/PMC7491385/ /pubmed/32937143 http://dx.doi.org/10.1016/j.ajhg.2020.08.018 Text en © 2020 American Society of Human Genetics.
spellingShingle Report
Mendoza-Ferreira, Natalia
Karakaya, Mert
Cengiz, Nur
Beijer, Danique
Brigatti, Karlla W.
Gonzaga-Jauregui, Claudia
Fuhrmann, Nico
Hölker, Irmgard
Thelen, Maximilian P.
Zetzsche, Sebastian
Rombo, Roman
Puffenberger, Erik G.
De Jonghe, Peter
Deconinck, Tine
Zuchner, Stephan
Strauss, Kevin A.
Carson, Vincent
Schrank, Bertold
Wunderlich, Gilbert
Baets, Jonathan
Wirth, Brunhilde
De Novo and Inherited Variants in GBF1 are Associated with Axonal Neuropathy Caused by Golgi Fragmentation
title De Novo and Inherited Variants in GBF1 are Associated with Axonal Neuropathy Caused by Golgi Fragmentation
title_full De Novo and Inherited Variants in GBF1 are Associated with Axonal Neuropathy Caused by Golgi Fragmentation
title_fullStr De Novo and Inherited Variants in GBF1 are Associated with Axonal Neuropathy Caused by Golgi Fragmentation
title_full_unstemmed De Novo and Inherited Variants in GBF1 are Associated with Axonal Neuropathy Caused by Golgi Fragmentation
title_short De Novo and Inherited Variants in GBF1 are Associated with Axonal Neuropathy Caused by Golgi Fragmentation
title_sort de novo and inherited variants in gbf1 are associated with axonal neuropathy caused by golgi fragmentation
topic Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7491385/
https://www.ncbi.nlm.nih.gov/pubmed/32937143
http://dx.doi.org/10.1016/j.ajhg.2020.08.018
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