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Intragenic variants in the SMN1 gene determine the clinical phenotype in 5q spinal muscular atrophy

OBJECTIVE: The aim of the study was to report the proportion of homozygous and compound heterozygous variants in the survival motor neuron 1 (SMN1) gene in a large population of patients with spinal muscular atrophy (SMA) and to correlate the severity of the disease with the presence of specific int...

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Autores principales: Mendonça, Rodrigo de Holanda, Matsui, Ciro, Polido, Graziela Jorge, Silva, André Macedo Serafim, Kulikowski, Leslie, Torchio Dias, Alexandre, Zanardo, Evelin Aline, Solla, Davi Jorge Fontoura, Gurgel-Giannetti, Juliana, de Moura, Ana Carolina Monteiro Lessa, Sampaio, Gabriela Palhares Campolina, Oliveira, Acary Souza Bulle, de Souza, Paulo Victor Sgobbi, Pinto, Wladimir Bocca Vieira de Rezende, Gonçalves, Eduardo Augusto, Farias, Igor Braga, Nardes, Flávia, Araújo, Alexandra Prufer de Queiroz Campos, Marques, Wilson, Tomaselli, Pedro José, Ribeiro, Mara Dell Ospedale, Kitajima, João Paulo, Paoli Monteiro, Fabíola, Saute, Jonas Alex Morales, Becker, Michele Michelin, Saraiva-Pereira, Maria Luiza, Brusius-Facchin, Ana Carolina, van der Linden, Vanessa, Florêncio, Rodrigo Neves, Barbosa, André Vinícius Soares, Machado-Costa, Marcela Camara, Pessoa, André Luiz Santos, Souza, Leticia Silva, Franca, Marcondes Cavalcante, Kok, Fernando, Reed, Umbertina Conti, Zanoteli, Edmar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Wolters Kluwer 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7524579/
https://www.ncbi.nlm.nih.gov/pubmed/33062891
http://dx.doi.org/10.1212/NXG.0000000000000505
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author Mendonça, Rodrigo de Holanda
Matsui, Ciro
Polido, Graziela Jorge
Silva, André Macedo Serafim
Kulikowski, Leslie
Torchio Dias, Alexandre
Zanardo, Evelin Aline
Solla, Davi Jorge Fontoura
Gurgel-Giannetti, Juliana
de Moura, Ana Carolina Monteiro Lessa
Sampaio, Gabriela Palhares Campolina
Oliveira, Acary Souza Bulle
de Souza, Paulo Victor Sgobbi
Pinto, Wladimir Bocca Vieira de Rezende
Gonçalves, Eduardo Augusto
Farias, Igor Braga
Nardes, Flávia
Araújo, Alexandra Prufer de Queiroz Campos
Marques, Wilson
Tomaselli, Pedro José
Ribeiro, Mara Dell Ospedale
Kitajima, João Paulo
Paoli Monteiro, Fabíola
Saute, Jonas Alex Morales
Becker, Michele Michelin
Saraiva-Pereira, Maria Luiza
Brusius-Facchin, Ana Carolina
van der Linden, Vanessa
Florêncio, Rodrigo Neves
Barbosa, André Vinícius Soares
Machado-Costa, Marcela Camara
Pessoa, André Luiz Santos
Souza, Leticia Silva
Franca, Marcondes Cavalcante
Kok, Fernando
Reed, Umbertina Conti
Zanoteli, Edmar
author_facet Mendonça, Rodrigo de Holanda
Matsui, Ciro
Polido, Graziela Jorge
Silva, André Macedo Serafim
Kulikowski, Leslie
Torchio Dias, Alexandre
Zanardo, Evelin Aline
Solla, Davi Jorge Fontoura
Gurgel-Giannetti, Juliana
de Moura, Ana Carolina Monteiro Lessa
Sampaio, Gabriela Palhares Campolina
Oliveira, Acary Souza Bulle
de Souza, Paulo Victor Sgobbi
Pinto, Wladimir Bocca Vieira de Rezende
Gonçalves, Eduardo Augusto
Farias, Igor Braga
Nardes, Flávia
Araújo, Alexandra Prufer de Queiroz Campos
Marques, Wilson
Tomaselli, Pedro José
Ribeiro, Mara Dell Ospedale
Kitajima, João Paulo
Paoli Monteiro, Fabíola
Saute, Jonas Alex Morales
Becker, Michele Michelin
Saraiva-Pereira, Maria Luiza
Brusius-Facchin, Ana Carolina
van der Linden, Vanessa
Florêncio, Rodrigo Neves
Barbosa, André Vinícius Soares
Machado-Costa, Marcela Camara
Pessoa, André Luiz Santos
Souza, Leticia Silva
Franca, Marcondes Cavalcante
Kok, Fernando
Reed, Umbertina Conti
Zanoteli, Edmar
author_sort Mendonça, Rodrigo de Holanda
collection PubMed
description OBJECTIVE: The aim of the study was to report the proportion of homozygous and compound heterozygous variants in the survival motor neuron 1 (SMN1) gene in a large population of patients with spinal muscular atrophy (SMA) and to correlate the severity of the disease with the presence of specific intragenic variants in SMN1 and with the SMN2 copy number. METHODS: Four hundred fifty Brazilian patients with SMA were included in a retrospective study, and clinical data were analyzed compared with genetic data; the SMN2 copy number was obtained by multiplex ligation-dependent probe amplification and pathogenic variants in SMN1 by next-generation sequencing. RESULTS: Four hundred two patients (89.3%) presented homozygous exon 7-SMN1 deletion, and 48 (10.7%) were compound heterozygous for the common deletion in one allele and a point mutation in the other allele. Recurrent variants in exons 3 and 6 (c.460C>T, c.770_780dup and c.734_735insC) accounted for almost 80% of compound heterozygous patients. Another recurrent pathogenic variant was c.5C>G at exon 1. Patients with c.770_780dup and c.734_735insC had a clinical phenotype correlated with SMN2 copy number, whereas the variants c.460C>T and c.5C>G determined a milder phenotype independently of the SMN2 copies. CONCLUSIONS: Patients with specific pathogenic variants (c.460C>T and c.5C>G) presented a milder phenotype, and the SMN2 copy number did not correlate with disease severity in this group.
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spelling pubmed-75245792020-10-14 Intragenic variants in the SMN1 gene determine the clinical phenotype in 5q spinal muscular atrophy Mendonça, Rodrigo de Holanda Matsui, Ciro Polido, Graziela Jorge Silva, André Macedo Serafim Kulikowski, Leslie Torchio Dias, Alexandre Zanardo, Evelin Aline Solla, Davi Jorge Fontoura Gurgel-Giannetti, Juliana de Moura, Ana Carolina Monteiro Lessa Sampaio, Gabriela Palhares Campolina Oliveira, Acary Souza Bulle de Souza, Paulo Victor Sgobbi Pinto, Wladimir Bocca Vieira de Rezende Gonçalves, Eduardo Augusto Farias, Igor Braga Nardes, Flávia Araújo, Alexandra Prufer de Queiroz Campos Marques, Wilson Tomaselli, Pedro José Ribeiro, Mara Dell Ospedale Kitajima, João Paulo Paoli Monteiro, Fabíola Saute, Jonas Alex Morales Becker, Michele Michelin Saraiva-Pereira, Maria Luiza Brusius-Facchin, Ana Carolina van der Linden, Vanessa Florêncio, Rodrigo Neves Barbosa, André Vinícius Soares Machado-Costa, Marcela Camara Pessoa, André Luiz Santos Souza, Leticia Silva Franca, Marcondes Cavalcante Kok, Fernando Reed, Umbertina Conti Zanoteli, Edmar Neurol Genet Article OBJECTIVE: The aim of the study was to report the proportion of homozygous and compound heterozygous variants in the survival motor neuron 1 (SMN1) gene in a large population of patients with spinal muscular atrophy (SMA) and to correlate the severity of the disease with the presence of specific intragenic variants in SMN1 and with the SMN2 copy number. METHODS: Four hundred fifty Brazilian patients with SMA were included in a retrospective study, and clinical data were analyzed compared with genetic data; the SMN2 copy number was obtained by multiplex ligation-dependent probe amplification and pathogenic variants in SMN1 by next-generation sequencing. RESULTS: Four hundred two patients (89.3%) presented homozygous exon 7-SMN1 deletion, and 48 (10.7%) were compound heterozygous for the common deletion in one allele and a point mutation in the other allele. Recurrent variants in exons 3 and 6 (c.460C>T, c.770_780dup and c.734_735insC) accounted for almost 80% of compound heterozygous patients. Another recurrent pathogenic variant was c.5C>G at exon 1. Patients with c.770_780dup and c.734_735insC had a clinical phenotype correlated with SMN2 copy number, whereas the variants c.460C>T and c.5C>G determined a milder phenotype independently of the SMN2 copies. CONCLUSIONS: Patients with specific pathogenic variants (c.460C>T and c.5C>G) presented a milder phenotype, and the SMN2 copy number did not correlate with disease severity in this group. Wolters Kluwer 2020-09-01 /pmc/articles/PMC7524579/ /pubmed/33062891 http://dx.doi.org/10.1212/NXG.0000000000000505 Text en Copyright © 2020 The Author(s). Published by Wolters Kluwer Health, Inc. on behalf of the American Academy of Neurology. This is an open access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (http://creativecommons.org/licenses/by-nc-nd/4.0/) , which permits downloading and sharing the work provided it is properly cited. The work cannot be changed in any way or used commercially without permission from the journal.
spellingShingle Article
Mendonça, Rodrigo de Holanda
Matsui, Ciro
Polido, Graziela Jorge
Silva, André Macedo Serafim
Kulikowski, Leslie
Torchio Dias, Alexandre
Zanardo, Evelin Aline
Solla, Davi Jorge Fontoura
Gurgel-Giannetti, Juliana
de Moura, Ana Carolina Monteiro Lessa
Sampaio, Gabriela Palhares Campolina
Oliveira, Acary Souza Bulle
de Souza, Paulo Victor Sgobbi
Pinto, Wladimir Bocca Vieira de Rezende
Gonçalves, Eduardo Augusto
Farias, Igor Braga
Nardes, Flávia
Araújo, Alexandra Prufer de Queiroz Campos
Marques, Wilson
Tomaselli, Pedro José
Ribeiro, Mara Dell Ospedale
Kitajima, João Paulo
Paoli Monteiro, Fabíola
Saute, Jonas Alex Morales
Becker, Michele Michelin
Saraiva-Pereira, Maria Luiza
Brusius-Facchin, Ana Carolina
van der Linden, Vanessa
Florêncio, Rodrigo Neves
Barbosa, André Vinícius Soares
Machado-Costa, Marcela Camara
Pessoa, André Luiz Santos
Souza, Leticia Silva
Franca, Marcondes Cavalcante
Kok, Fernando
Reed, Umbertina Conti
Zanoteli, Edmar
Intragenic variants in the SMN1 gene determine the clinical phenotype in 5q spinal muscular atrophy
title Intragenic variants in the SMN1 gene determine the clinical phenotype in 5q spinal muscular atrophy
title_full Intragenic variants in the SMN1 gene determine the clinical phenotype in 5q spinal muscular atrophy
title_fullStr Intragenic variants in the SMN1 gene determine the clinical phenotype in 5q spinal muscular atrophy
title_full_unstemmed Intragenic variants in the SMN1 gene determine the clinical phenotype in 5q spinal muscular atrophy
title_short Intragenic variants in the SMN1 gene determine the clinical phenotype in 5q spinal muscular atrophy
title_sort intragenic variants in the smn1 gene determine the clinical phenotype in 5q spinal muscular atrophy
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7524579/
https://www.ncbi.nlm.nih.gov/pubmed/33062891
http://dx.doi.org/10.1212/NXG.0000000000000505
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