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Adult-onset autosomal dominant spastic paraplegia linked to a GTPase-effector domain mutation of dynamin 2

BACKGROUND: Hereditary Spastic Paraplegia (HSP) represents a large group of clinically and genetically heterogeneous disorders linked to over 70 different loci and more than 60 recognized disease-causing genes. A heightened vulnerability to disruption of various cellular processes inherent to the un...

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Autores principales: Sambuughin, Nyamkhishig, Goldfarb, Lev G., Sivtseva, Tatiana M., Davydova, Tatiana K., Vladimirtsev, Vsevolod A., Osakovskiy, Vladimir L., Danilova, Al’bina P., Nikitina, Raisa S., Ylakhova, Anastasia N., Diachkovskaya, Margarita P., Sundborger, Anna C., Renwick, Neil M., Platonov, Fyodor A., Hinshaw, Jenny E., Toro, Camilo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4628244/
https://www.ncbi.nlm.nih.gov/pubmed/26517984
http://dx.doi.org/10.1186/s12883-015-0481-3
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author Sambuughin, Nyamkhishig
Goldfarb, Lev G.
Sivtseva, Tatiana M.
Davydova, Tatiana K.
Vladimirtsev, Vsevolod A.
Osakovskiy, Vladimir L.
Danilova, Al’bina P.
Nikitina, Raisa S.
Ylakhova, Anastasia N.
Diachkovskaya, Margarita P.
Sundborger, Anna C.
Renwick, Neil M.
Platonov, Fyodor A.
Hinshaw, Jenny E.
Toro, Camilo
author_facet Sambuughin, Nyamkhishig
Goldfarb, Lev G.
Sivtseva, Tatiana M.
Davydova, Tatiana K.
Vladimirtsev, Vsevolod A.
Osakovskiy, Vladimir L.
Danilova, Al’bina P.
Nikitina, Raisa S.
Ylakhova, Anastasia N.
Diachkovskaya, Margarita P.
Sundborger, Anna C.
Renwick, Neil M.
Platonov, Fyodor A.
Hinshaw, Jenny E.
Toro, Camilo
author_sort Sambuughin, Nyamkhishig
collection PubMed
description BACKGROUND: Hereditary Spastic Paraplegia (HSP) represents a large group of clinically and genetically heterogeneous disorders linked to over 70 different loci and more than 60 recognized disease-causing genes. A heightened vulnerability to disruption of various cellular processes inherent to the unique function and morphology of corticospinal neurons may account, at least in part, for the genetic heterogeneity. METHODS: Whole exome sequencing was utilized to identify candidate genetic variants in a four-generation Siberian kindred that includes nine individuals showing clinical features of HSP. Segregation of candidate variants within the family yielded a disease-associated mutation. Functional as well as in-silico structural analyses confirmed the selected candidate variant to be causative. RESULTS: Nine known patients had young-adult onset of bilateral slowly progressive lower-limb spasticity, weakness and hyperreflexia progressing over two-to-three decades to wheel-chair dependency. In the advanced stage of the disease, some patients also had distal wasting of lower leg muscles, pes cavus, mildly decreased vibratory sense in the ankles, and urinary urgency along with electrophysiological evidence of a mild distal motor/sensory axonopathy. Molecular analyses uncovered a missense c.2155C > T, p.R719W mutation in the highly conserved GTP-effector domain of dynamin 2. The mutant DNM2 co-segregated with HSP and affected endocytosis when expressed in HeLa cells. In-silico modeling indicated that this HSP-associated dynamin 2 mutation is located in a highly conserved bundle-signaling element of the protein while dynamin 2 mutations associated with other disorders are located in the stalk and PH domains; p.R719W potentially disrupts dynamin 2 assembly. CONCLUSION: This is the first report linking a mutation in dynamin 2 to a HSP phenotype. Dynamin 2 mutations have previously been associated with other phenotypes including two forms of Charcot-Marie-Tooth neuropathy and centronuclear myopathy. These strikingly different pathogenic effects may depend on structural relationships the mutations disrupt. Awareness of this distinct association between HSP and c.2155C > T, p.R719W mutation will facilitate ascertainment of additional DNM2 HSP families and will direct future research toward better understanding of cell biological processes involved in these partly overlapping clinical syndromes.
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spelling pubmed-46282442015-11-01 Adult-onset autosomal dominant spastic paraplegia linked to a GTPase-effector domain mutation of dynamin 2 Sambuughin, Nyamkhishig Goldfarb, Lev G. Sivtseva, Tatiana M. Davydova, Tatiana K. Vladimirtsev, Vsevolod A. Osakovskiy, Vladimir L. Danilova, Al’bina P. Nikitina, Raisa S. Ylakhova, Anastasia N. Diachkovskaya, Margarita P. Sundborger, Anna C. Renwick, Neil M. Platonov, Fyodor A. Hinshaw, Jenny E. Toro, Camilo BMC Neurol Research Article BACKGROUND: Hereditary Spastic Paraplegia (HSP) represents a large group of clinically and genetically heterogeneous disorders linked to over 70 different loci and more than 60 recognized disease-causing genes. A heightened vulnerability to disruption of various cellular processes inherent to the unique function and morphology of corticospinal neurons may account, at least in part, for the genetic heterogeneity. METHODS: Whole exome sequencing was utilized to identify candidate genetic variants in a four-generation Siberian kindred that includes nine individuals showing clinical features of HSP. Segregation of candidate variants within the family yielded a disease-associated mutation. Functional as well as in-silico structural analyses confirmed the selected candidate variant to be causative. RESULTS: Nine known patients had young-adult onset of bilateral slowly progressive lower-limb spasticity, weakness and hyperreflexia progressing over two-to-three decades to wheel-chair dependency. In the advanced stage of the disease, some patients also had distal wasting of lower leg muscles, pes cavus, mildly decreased vibratory sense in the ankles, and urinary urgency along with electrophysiological evidence of a mild distal motor/sensory axonopathy. Molecular analyses uncovered a missense c.2155C > T, p.R719W mutation in the highly conserved GTP-effector domain of dynamin 2. The mutant DNM2 co-segregated with HSP and affected endocytosis when expressed in HeLa cells. In-silico modeling indicated that this HSP-associated dynamin 2 mutation is located in a highly conserved bundle-signaling element of the protein while dynamin 2 mutations associated with other disorders are located in the stalk and PH domains; p.R719W potentially disrupts dynamin 2 assembly. CONCLUSION: This is the first report linking a mutation in dynamin 2 to a HSP phenotype. Dynamin 2 mutations have previously been associated with other phenotypes including two forms of Charcot-Marie-Tooth neuropathy and centronuclear myopathy. These strikingly different pathogenic effects may depend on structural relationships the mutations disrupt. Awareness of this distinct association between HSP and c.2155C > T, p.R719W mutation will facilitate ascertainment of additional DNM2 HSP families and will direct future research toward better understanding of cell biological processes involved in these partly overlapping clinical syndromes. BioMed Central 2015-10-30 /pmc/articles/PMC4628244/ /pubmed/26517984 http://dx.doi.org/10.1186/s12883-015-0481-3 Text en © Sambuughin et al. 2015 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research Article
Sambuughin, Nyamkhishig
Goldfarb, Lev G.
Sivtseva, Tatiana M.
Davydova, Tatiana K.
Vladimirtsev, Vsevolod A.
Osakovskiy, Vladimir L.
Danilova, Al’bina P.
Nikitina, Raisa S.
Ylakhova, Anastasia N.
Diachkovskaya, Margarita P.
Sundborger, Anna C.
Renwick, Neil M.
Platonov, Fyodor A.
Hinshaw, Jenny E.
Toro, Camilo
Adult-onset autosomal dominant spastic paraplegia linked to a GTPase-effector domain mutation of dynamin 2
title Adult-onset autosomal dominant spastic paraplegia linked to a GTPase-effector domain mutation of dynamin 2
title_full Adult-onset autosomal dominant spastic paraplegia linked to a GTPase-effector domain mutation of dynamin 2
title_fullStr Adult-onset autosomal dominant spastic paraplegia linked to a GTPase-effector domain mutation of dynamin 2
title_full_unstemmed Adult-onset autosomal dominant spastic paraplegia linked to a GTPase-effector domain mutation of dynamin 2
title_short Adult-onset autosomal dominant spastic paraplegia linked to a GTPase-effector domain mutation of dynamin 2
title_sort adult-onset autosomal dominant spastic paraplegia linked to a gtpase-effector domain mutation of dynamin 2
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4628244/
https://www.ncbi.nlm.nih.gov/pubmed/26517984
http://dx.doi.org/10.1186/s12883-015-0481-3
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