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An ancestral 10-bp repeat expansion in VWA1 causes recessive hereditary motor neuropathy

The extracellular matrix comprises a network of macromolecules such as collagens, proteoglycans and glycoproteins. VWA1 (von Willebrand factor A domain containing 1) encodes a component of the extracellular matrix that interacts with perlecan/collagen VI, appears to be involved in stabilizing extrac...

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Autores principales: Pagnamenta, Alistair T, Kaiyrzhanov, Rauan, Zou, Yaqun, Da'as, Sahar I, Maroofian, Reza, Donkervoort, Sandra, Dominik, Natalia, Lauffer, Marlen, Ferla, Matteo P, Orioli, Andrea, Giess, Adam, Tucci, Arianna, Beetz, Christian, Sedghi, Maryam, Ansari, Behnaz, Barresi, Rita, Basiri, Keivan, Cortese, Andrea, Elgar, Greg, Fernandez-Garcia, Miguel A, Yip, Janice, Foley, A Reghan, Gutowski, Nicholas, Jungbluth, Heinz, Lassche, Saskia, Lavin, Tim, Marcelis, Carlo, Marks, Peter, Marini-Bettolo, Chiara, Medne, Livija, Moslemi, Ali-Reza, Sarkozy, Anna, Reilly, Mary M, Muntoni, Francesco, Millan, Francisca, Muraresku, Colleen C, Need, Anna C, Nemeth, Andrea H, Neuhaus, Sarah B, Norwood, Fiona, O'Donnell, Marie, O’Driscoll, Mary, Rankin, Julia, Yum, Sabrina W, Zolkipli-Cunningham, Zarazuela, Brusius, Isabell, Wunderlich, Gilbert, Karakaya, Mert, Wirth, Brunhilde, Fakhro, Khalid A, Tajsharghi, Homa, Bönnemann, Carsten G, Taylor, Jenny C, Houlden, Henry
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8263055/
https://www.ncbi.nlm.nih.gov/pubmed/33559681
http://dx.doi.org/10.1093/brain/awaa420
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author Pagnamenta, Alistair T
Kaiyrzhanov, Rauan
Zou, Yaqun
Da'as, Sahar I
Maroofian, Reza
Donkervoort, Sandra
Dominik, Natalia
Lauffer, Marlen
Ferla, Matteo P
Orioli, Andrea
Giess, Adam
Tucci, Arianna
Beetz, Christian
Sedghi, Maryam
Ansari, Behnaz
Barresi, Rita
Basiri, Keivan
Cortese, Andrea
Elgar, Greg
Fernandez-Garcia, Miguel A
Yip, Janice
Foley, A Reghan
Gutowski, Nicholas
Jungbluth, Heinz
Lassche, Saskia
Lavin, Tim
Marcelis, Carlo
Marks, Peter
Marini-Bettolo, Chiara
Medne, Livija
Moslemi, Ali-Reza
Sarkozy, Anna
Reilly, Mary M
Muntoni, Francesco
Millan, Francisca
Muraresku, Colleen C
Need, Anna C
Nemeth, Andrea H
Neuhaus, Sarah B
Norwood, Fiona
O'Donnell, Marie
O’Driscoll, Mary
Rankin, Julia
Yum, Sabrina W
Zolkipli-Cunningham, Zarazuela
Brusius, Isabell
Wunderlich, Gilbert
Karakaya, Mert
Wirth, Brunhilde
Fakhro, Khalid A
Tajsharghi, Homa
Bönnemann, Carsten G
Taylor, Jenny C
Houlden, Henry
author_facet Pagnamenta, Alistair T
Kaiyrzhanov, Rauan
Zou, Yaqun
Da'as, Sahar I
Maroofian, Reza
Donkervoort, Sandra
Dominik, Natalia
Lauffer, Marlen
Ferla, Matteo P
Orioli, Andrea
Giess, Adam
Tucci, Arianna
Beetz, Christian
Sedghi, Maryam
Ansari, Behnaz
Barresi, Rita
Basiri, Keivan
Cortese, Andrea
Elgar, Greg
Fernandez-Garcia, Miguel A
Yip, Janice
Foley, A Reghan
Gutowski, Nicholas
Jungbluth, Heinz
Lassche, Saskia
Lavin, Tim
Marcelis, Carlo
Marks, Peter
Marini-Bettolo, Chiara
Medne, Livija
Moslemi, Ali-Reza
Sarkozy, Anna
Reilly, Mary M
Muntoni, Francesco
Millan, Francisca
Muraresku, Colleen C
Need, Anna C
Nemeth, Andrea H
Neuhaus, Sarah B
Norwood, Fiona
O'Donnell, Marie
O’Driscoll, Mary
Rankin, Julia
Yum, Sabrina W
Zolkipli-Cunningham, Zarazuela
Brusius, Isabell
Wunderlich, Gilbert
Karakaya, Mert
Wirth, Brunhilde
Fakhro, Khalid A
Tajsharghi, Homa
Bönnemann, Carsten G
Taylor, Jenny C
Houlden, Henry
author_sort Pagnamenta, Alistair T
collection PubMed
description The extracellular matrix comprises a network of macromolecules such as collagens, proteoglycans and glycoproteins. VWA1 (von Willebrand factor A domain containing 1) encodes a component of the extracellular matrix that interacts with perlecan/collagen VI, appears to be involved in stabilizing extracellular matrix structures, and demonstrates high expression levels in tibial nerve. Vwa1-deficient mice manifest with abnormal peripheral nerve structure/function; however, VWA1 variants have not previously been associated with human disease. By interrogating the genome sequences of 74 180 individuals from the 100K Genomes Project in combination with international gene-matching efforts and targeted sequencing, we identified 17 individuals from 15 families with an autosomal-recessive, non-length dependent, hereditary motor neuropathy and rare biallelic variants in VWA1. A single disease-associated allele p.(G25Rfs*74), a 10-bp repeat expansion, was observed in 14/15 families and was homozygous in 10/15. Given an allele frequency in European populations approaching 1/1000, the seven unrelated homozygote individuals ascertained from the 100K Genomes Project represents a substantial enrichment above expected. Haplotype analysis identified a shared 220 kb region suggesting that this founder mutation arose >7000 years ago. A wide age-range of patients (6–83 years) helped delineate the clinical phenotype over time. The commonest disease presentation in the cohort was an early-onset (mean 2.0 ± 1.4 years) non-length-dependent axonal hereditary motor neuropathy, confirmed on electrophysiology, which will have to be differentiated from other predominantly or pure motor neuropathies and neuronopathies. Because of slow disease progression, ambulation was largely preserved. Neurophysiology, muscle histopathology, and muscle MRI findings typically revealed clear neurogenic changes with single isolated cases displaying additional myopathic process. We speculate that a few findings of myopathic changes might be secondary to chronic denervation rather than indicating an additional myopathic disease process. Duplex reverse transcription polymerase chain reaction and immunoblotting using patient fibroblasts revealed that the founder allele results in partial nonsense mediated decay and an absence of detectable protein. CRISPR and morpholino vwa1 modelling in zebrafish demonstrated reductions in motor neuron axonal growth, synaptic formation in the skeletal muscles and locomotive behaviour. In summary, we estimate that biallelic variants in VWA1 may be responsible for up to 1% of unexplained hereditary motor neuropathy cases in Europeans. The detailed clinical characterization provided here will facilitate targeted testing on suitable patient cohorts. This novel disease gene may have previously evaded detection because of high GC content, consequential low coverage and computational difficulties associated with robustly detecting repeat-expansions. Reviewing previously unsolved exomes using lower QC filters may generate further diagnoses.
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spelling pubmed-82630552021-07-08 An ancestral 10-bp repeat expansion in VWA1 causes recessive hereditary motor neuropathy Pagnamenta, Alistair T Kaiyrzhanov, Rauan Zou, Yaqun Da'as, Sahar I Maroofian, Reza Donkervoort, Sandra Dominik, Natalia Lauffer, Marlen Ferla, Matteo P Orioli, Andrea Giess, Adam Tucci, Arianna Beetz, Christian Sedghi, Maryam Ansari, Behnaz Barresi, Rita Basiri, Keivan Cortese, Andrea Elgar, Greg Fernandez-Garcia, Miguel A Yip, Janice Foley, A Reghan Gutowski, Nicholas Jungbluth, Heinz Lassche, Saskia Lavin, Tim Marcelis, Carlo Marks, Peter Marini-Bettolo, Chiara Medne, Livija Moslemi, Ali-Reza Sarkozy, Anna Reilly, Mary M Muntoni, Francesco Millan, Francisca Muraresku, Colleen C Need, Anna C Nemeth, Andrea H Neuhaus, Sarah B Norwood, Fiona O'Donnell, Marie O’Driscoll, Mary Rankin, Julia Yum, Sabrina W Zolkipli-Cunningham, Zarazuela Brusius, Isabell Wunderlich, Gilbert Karakaya, Mert Wirth, Brunhilde Fakhro, Khalid A Tajsharghi, Homa Bönnemann, Carsten G Taylor, Jenny C Houlden, Henry Brain Original Articles The extracellular matrix comprises a network of macromolecules such as collagens, proteoglycans and glycoproteins. VWA1 (von Willebrand factor A domain containing 1) encodes a component of the extracellular matrix that interacts with perlecan/collagen VI, appears to be involved in stabilizing extracellular matrix structures, and demonstrates high expression levels in tibial nerve. Vwa1-deficient mice manifest with abnormal peripheral nerve structure/function; however, VWA1 variants have not previously been associated with human disease. By interrogating the genome sequences of 74 180 individuals from the 100K Genomes Project in combination with international gene-matching efforts and targeted sequencing, we identified 17 individuals from 15 families with an autosomal-recessive, non-length dependent, hereditary motor neuropathy and rare biallelic variants in VWA1. A single disease-associated allele p.(G25Rfs*74), a 10-bp repeat expansion, was observed in 14/15 families and was homozygous in 10/15. Given an allele frequency in European populations approaching 1/1000, the seven unrelated homozygote individuals ascertained from the 100K Genomes Project represents a substantial enrichment above expected. Haplotype analysis identified a shared 220 kb region suggesting that this founder mutation arose >7000 years ago. A wide age-range of patients (6–83 years) helped delineate the clinical phenotype over time. The commonest disease presentation in the cohort was an early-onset (mean 2.0 ± 1.4 years) non-length-dependent axonal hereditary motor neuropathy, confirmed on electrophysiology, which will have to be differentiated from other predominantly or pure motor neuropathies and neuronopathies. Because of slow disease progression, ambulation was largely preserved. Neurophysiology, muscle histopathology, and muscle MRI findings typically revealed clear neurogenic changes with single isolated cases displaying additional myopathic process. We speculate that a few findings of myopathic changes might be secondary to chronic denervation rather than indicating an additional myopathic disease process. Duplex reverse transcription polymerase chain reaction and immunoblotting using patient fibroblasts revealed that the founder allele results in partial nonsense mediated decay and an absence of detectable protein. CRISPR and morpholino vwa1 modelling in zebrafish demonstrated reductions in motor neuron axonal growth, synaptic formation in the skeletal muscles and locomotive behaviour. In summary, we estimate that biallelic variants in VWA1 may be responsible for up to 1% of unexplained hereditary motor neuropathy cases in Europeans. The detailed clinical characterization provided here will facilitate targeted testing on suitable patient cohorts. This novel disease gene may have previously evaded detection because of high GC content, consequential low coverage and computational difficulties associated with robustly detecting repeat-expansions. Reviewing previously unsolved exomes using lower QC filters may generate further diagnoses. Oxford University Press 2021-01-18 /pmc/articles/PMC8263055/ /pubmed/33559681 http://dx.doi.org/10.1093/brain/awaa420 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 Articles
Pagnamenta, Alistair T
Kaiyrzhanov, Rauan
Zou, Yaqun
Da'as, Sahar I
Maroofian, Reza
Donkervoort, Sandra
Dominik, Natalia
Lauffer, Marlen
Ferla, Matteo P
Orioli, Andrea
Giess, Adam
Tucci, Arianna
Beetz, Christian
Sedghi, Maryam
Ansari, Behnaz
Barresi, Rita
Basiri, Keivan
Cortese, Andrea
Elgar, Greg
Fernandez-Garcia, Miguel A
Yip, Janice
Foley, A Reghan
Gutowski, Nicholas
Jungbluth, Heinz
Lassche, Saskia
Lavin, Tim
Marcelis, Carlo
Marks, Peter
Marini-Bettolo, Chiara
Medne, Livija
Moslemi, Ali-Reza
Sarkozy, Anna
Reilly, Mary M
Muntoni, Francesco
Millan, Francisca
Muraresku, Colleen C
Need, Anna C
Nemeth, Andrea H
Neuhaus, Sarah B
Norwood, Fiona
O'Donnell, Marie
O’Driscoll, Mary
Rankin, Julia
Yum, Sabrina W
Zolkipli-Cunningham, Zarazuela
Brusius, Isabell
Wunderlich, Gilbert
Karakaya, Mert
Wirth, Brunhilde
Fakhro, Khalid A
Tajsharghi, Homa
Bönnemann, Carsten G
Taylor, Jenny C
Houlden, Henry
An ancestral 10-bp repeat expansion in VWA1 causes recessive hereditary motor neuropathy
title An ancestral 10-bp repeat expansion in VWA1 causes recessive hereditary motor neuropathy
title_full An ancestral 10-bp repeat expansion in VWA1 causes recessive hereditary motor neuropathy
title_fullStr An ancestral 10-bp repeat expansion in VWA1 causes recessive hereditary motor neuropathy
title_full_unstemmed An ancestral 10-bp repeat expansion in VWA1 causes recessive hereditary motor neuropathy
title_short An ancestral 10-bp repeat expansion in VWA1 causes recessive hereditary motor neuropathy
title_sort ancestral 10-bp repeat expansion in vwa1 causes recessive hereditary motor neuropathy
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8263055/
https://www.ncbi.nlm.nih.gov/pubmed/33559681
http://dx.doi.org/10.1093/brain/awaa420
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