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Spinal muscular atrophy type I associated with a novel SMN1 splicing variant that disrupts the expression of the functional transcript

INTRODUCTION: Spinal muscular atrophy (SMA) is an autosomal recessive neuromuscular disorder caused by pathogenic variants in the SMN1 gene. The majority of SMA patients harbor a homozygous deletion of SMN1 exon 7 (95%). Heterozygosity for a conventional variant and a deletion is rare (5%) and not e...

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Autores principales: Votsi, Christina, Koutsou, Pantelitsa, Ververis, Antonis, Georghiou, Anthi, Nicolaou, Paschalis, Tanteles, George, Christodoulou, Kyproula
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10548546/
https://www.ncbi.nlm.nih.gov/pubmed/37799281
http://dx.doi.org/10.3389/fneur.2023.1241195
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author Votsi, Christina
Koutsou, Pantelitsa
Ververis, Antonis
Georghiou, Anthi
Nicolaou, Paschalis
Tanteles, George
Christodoulou, Kyproula
author_facet Votsi, Christina
Koutsou, Pantelitsa
Ververis, Antonis
Georghiou, Anthi
Nicolaou, Paschalis
Tanteles, George
Christodoulou, Kyproula
author_sort Votsi, Christina
collection PubMed
description INTRODUCTION: Spinal muscular atrophy (SMA) is an autosomal recessive neuromuscular disorder caused by pathogenic variants in the SMN1 gene. The majority of SMA patients harbor a homozygous deletion of SMN1 exon 7 (95%). Heterozygosity for a conventional variant and a deletion is rare (5%) and not easily detected, due to the highly homologous SMN2 gene interference. SMN2 mainly produces a truncated non-functional protein (SMN-d7) instead of the full-length functional (SMN-FL). We hereby report a novel SMN1 splicing variant in an infant with severe SMA. METHODS: MLPA was used for SMN1/2 exon dosage determination. Sanger sequencing approaches and long-range PCR were employed to search for an SMN1 variant. Conventional and improved Real-time PCR assays were developed for the qualitative and quantitative SMN1/2 RNA analysis. RESULTS: The novel SMN1 splice-site variant c.835-8_835-5delinsG, was identified in compound heterozygosity with SMN1 exons 7/8 deletion. RNA studies revealed complete absence of SMN1 exon 7, thus confirming a disruptive effect of the variant on SMN1 splicing. No expression of the functional SMN1-FL transcript, remarkable expression of the SMN1-d7 and increased levels of the SMN2-FL/SMN2-d7 transcripts were observed. DISCUSSION: We verified the occurrence of a non-deletion SMN1 variant and supported its pathogenicity, thus expanding the SMN1 variants spectrum. We discuss the updated SMA genetic findings in the Cypriot population, highlighting an increased percentage of intragenic variants compared to other populations.
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spelling pubmed-105485462023-10-05 Spinal muscular atrophy type I associated with a novel SMN1 splicing variant that disrupts the expression of the functional transcript Votsi, Christina Koutsou, Pantelitsa Ververis, Antonis Georghiou, Anthi Nicolaou, Paschalis Tanteles, George Christodoulou, Kyproula Front Neurol Neurology INTRODUCTION: Spinal muscular atrophy (SMA) is an autosomal recessive neuromuscular disorder caused by pathogenic variants in the SMN1 gene. The majority of SMA patients harbor a homozygous deletion of SMN1 exon 7 (95%). Heterozygosity for a conventional variant and a deletion is rare (5%) and not easily detected, due to the highly homologous SMN2 gene interference. SMN2 mainly produces a truncated non-functional protein (SMN-d7) instead of the full-length functional (SMN-FL). We hereby report a novel SMN1 splicing variant in an infant with severe SMA. METHODS: MLPA was used for SMN1/2 exon dosage determination. Sanger sequencing approaches and long-range PCR were employed to search for an SMN1 variant. Conventional and improved Real-time PCR assays were developed for the qualitative and quantitative SMN1/2 RNA analysis. RESULTS: The novel SMN1 splice-site variant c.835-8_835-5delinsG, was identified in compound heterozygosity with SMN1 exons 7/8 deletion. RNA studies revealed complete absence of SMN1 exon 7, thus confirming a disruptive effect of the variant on SMN1 splicing. No expression of the functional SMN1-FL transcript, remarkable expression of the SMN1-d7 and increased levels of the SMN2-FL/SMN2-d7 transcripts were observed. DISCUSSION: We verified the occurrence of a non-deletion SMN1 variant and supported its pathogenicity, thus expanding the SMN1 variants spectrum. We discuss the updated SMA genetic findings in the Cypriot population, highlighting an increased percentage of intragenic variants compared to other populations. Frontiers Media S.A. 2023-09-20 /pmc/articles/PMC10548546/ /pubmed/37799281 http://dx.doi.org/10.3389/fneur.2023.1241195 Text en Copyright © 2023 Votsi, Koutsou, Ververis, Georghiou, Nicolaou, Tanteles and Christodoulou. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Neurology
Votsi, Christina
Koutsou, Pantelitsa
Ververis, Antonis
Georghiou, Anthi
Nicolaou, Paschalis
Tanteles, George
Christodoulou, Kyproula
Spinal muscular atrophy type I associated with a novel SMN1 splicing variant that disrupts the expression of the functional transcript
title Spinal muscular atrophy type I associated with a novel SMN1 splicing variant that disrupts the expression of the functional transcript
title_full Spinal muscular atrophy type I associated with a novel SMN1 splicing variant that disrupts the expression of the functional transcript
title_fullStr Spinal muscular atrophy type I associated with a novel SMN1 splicing variant that disrupts the expression of the functional transcript
title_full_unstemmed Spinal muscular atrophy type I associated with a novel SMN1 splicing variant that disrupts the expression of the functional transcript
title_short Spinal muscular atrophy type I associated with a novel SMN1 splicing variant that disrupts the expression of the functional transcript
title_sort spinal muscular atrophy type i associated with a novel smn1 splicing variant that disrupts the expression of the functional transcript
topic Neurology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10548546/
https://www.ncbi.nlm.nih.gov/pubmed/37799281
http://dx.doi.org/10.3389/fneur.2023.1241195
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