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Burden of Rare Variants in ALS and Axonal Hereditary Neuropathy Genes Influence Survival in ALS: Insights from a Next Generation Sequencing Study of an Italian ALS Cohort

Although the genetic architecture of amyotrophic lateral sclerosis (ALS) is incompletely understood, recent findings suggest a complex model of inheritance in ALS, which is consistent with a multistep pathogenetic process. Therefore, the aim of our work is to further explore the architecture of ALS...

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Autores principales: Scarlino, Stefania, Domi, Teuta, Pozzi, Laura, Romano, Alessandro, Pipitone, Giovanni Battista, Falzone, Yuri Matteo, Mosca, Lorena, Penco, Silvana, Lunetta, Christian, Sansone, Valeria, Tremolizzo, Lucio, Fazio, Raffaella, Agosta, Federica, Filippi, Massimo, Carrera, Paola, Riva, Nilo, Quattrini, Angelo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7246633/
https://www.ncbi.nlm.nih.gov/pubmed/32397312
http://dx.doi.org/10.3390/ijms21093346
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author Scarlino, Stefania
Domi, Teuta
Pozzi, Laura
Romano, Alessandro
Pipitone, Giovanni Battista
Falzone, Yuri Matteo
Mosca, Lorena
Penco, Silvana
Lunetta, Christian
Sansone, Valeria
Tremolizzo, Lucio
Fazio, Raffaella
Agosta, Federica
Filippi, Massimo
Carrera, Paola
Riva, Nilo
Quattrini, Angelo
author_facet Scarlino, Stefania
Domi, Teuta
Pozzi, Laura
Romano, Alessandro
Pipitone, Giovanni Battista
Falzone, Yuri Matteo
Mosca, Lorena
Penco, Silvana
Lunetta, Christian
Sansone, Valeria
Tremolizzo, Lucio
Fazio, Raffaella
Agosta, Federica
Filippi, Massimo
Carrera, Paola
Riva, Nilo
Quattrini, Angelo
author_sort Scarlino, Stefania
collection PubMed
description Although the genetic architecture of amyotrophic lateral sclerosis (ALS) is incompletely understood, recent findings suggest a complex model of inheritance in ALS, which is consistent with a multistep pathogenetic process. Therefore, the aim of our work is to further explore the architecture of ALS using targeted next generation sequencing (NGS) analysis, enriched in motor neuron diseases (MND)-associated genes which are also implicated in axonal hereditary motor neuropathy (HMN), in order to investigate if disease expression, including the progression rate, could be influenced by the combination of multiple rare gene variants. We analyzed 29 genes in an Italian cohort of 83 patients with both familial and sporadic ALS. Overall, we detected 43 rare variants in 17 different genes and found that 43.4% of the ALS patients harbored a variant in at least one of the investigated genes. Of note, 27.9% of the variants were identified in other MND- and HMN-associated genes. Moreover, multiple gene variants were identified in 17% of the patients. The burden of rare variants is associated with reduced survival and with the time to reach King stage 4, i.e., the time to reach the need for percutaneous endoscopic gastrostomy (PEG) positioning or non-invasive mechanical ventilation (NIMV) initiation, independently of known negative prognostic factors. Our data contribute to a better understanding of the molecular basis of ALS supporting the hypothesis that rare variant burden could play a role in the multistep model of disease and could exert a negative prognostic effect. Moreover, we further extend the genetic landscape of ALS to other MND-associated genes traditionally implicated in degenerative diseases of peripheral axons, such as HMN and CMT2.
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spelling pubmed-72466332020-06-10 Burden of Rare Variants in ALS and Axonal Hereditary Neuropathy Genes Influence Survival in ALS: Insights from a Next Generation Sequencing Study of an Italian ALS Cohort Scarlino, Stefania Domi, Teuta Pozzi, Laura Romano, Alessandro Pipitone, Giovanni Battista Falzone, Yuri Matteo Mosca, Lorena Penco, Silvana Lunetta, Christian Sansone, Valeria Tremolizzo, Lucio Fazio, Raffaella Agosta, Federica Filippi, Massimo Carrera, Paola Riva, Nilo Quattrini, Angelo Int J Mol Sci Article Although the genetic architecture of amyotrophic lateral sclerosis (ALS) is incompletely understood, recent findings suggest a complex model of inheritance in ALS, which is consistent with a multistep pathogenetic process. Therefore, the aim of our work is to further explore the architecture of ALS using targeted next generation sequencing (NGS) analysis, enriched in motor neuron diseases (MND)-associated genes which are also implicated in axonal hereditary motor neuropathy (HMN), in order to investigate if disease expression, including the progression rate, could be influenced by the combination of multiple rare gene variants. We analyzed 29 genes in an Italian cohort of 83 patients with both familial and sporadic ALS. Overall, we detected 43 rare variants in 17 different genes and found that 43.4% of the ALS patients harbored a variant in at least one of the investigated genes. Of note, 27.9% of the variants were identified in other MND- and HMN-associated genes. Moreover, multiple gene variants were identified in 17% of the patients. The burden of rare variants is associated with reduced survival and with the time to reach King stage 4, i.e., the time to reach the need for percutaneous endoscopic gastrostomy (PEG) positioning or non-invasive mechanical ventilation (NIMV) initiation, independently of known negative prognostic factors. Our data contribute to a better understanding of the molecular basis of ALS supporting the hypothesis that rare variant burden could play a role in the multistep model of disease and could exert a negative prognostic effect. Moreover, we further extend the genetic landscape of ALS to other MND-associated genes traditionally implicated in degenerative diseases of peripheral axons, such as HMN and CMT2. MDPI 2020-05-08 /pmc/articles/PMC7246633/ /pubmed/32397312 http://dx.doi.org/10.3390/ijms21093346 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Scarlino, Stefania
Domi, Teuta
Pozzi, Laura
Romano, Alessandro
Pipitone, Giovanni Battista
Falzone, Yuri Matteo
Mosca, Lorena
Penco, Silvana
Lunetta, Christian
Sansone, Valeria
Tremolizzo, Lucio
Fazio, Raffaella
Agosta, Federica
Filippi, Massimo
Carrera, Paola
Riva, Nilo
Quattrini, Angelo
Burden of Rare Variants in ALS and Axonal Hereditary Neuropathy Genes Influence Survival in ALS: Insights from a Next Generation Sequencing Study of an Italian ALS Cohort
title Burden of Rare Variants in ALS and Axonal Hereditary Neuropathy Genes Influence Survival in ALS: Insights from a Next Generation Sequencing Study of an Italian ALS Cohort
title_full Burden of Rare Variants in ALS and Axonal Hereditary Neuropathy Genes Influence Survival in ALS: Insights from a Next Generation Sequencing Study of an Italian ALS Cohort
title_fullStr Burden of Rare Variants in ALS and Axonal Hereditary Neuropathy Genes Influence Survival in ALS: Insights from a Next Generation Sequencing Study of an Italian ALS Cohort
title_full_unstemmed Burden of Rare Variants in ALS and Axonal Hereditary Neuropathy Genes Influence Survival in ALS: Insights from a Next Generation Sequencing Study of an Italian ALS Cohort
title_short Burden of Rare Variants in ALS and Axonal Hereditary Neuropathy Genes Influence Survival in ALS: Insights from a Next Generation Sequencing Study of an Italian ALS Cohort
title_sort burden of rare variants in als and axonal hereditary neuropathy genes influence survival in als: insights from a next generation sequencing study of an italian als cohort
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7246633/
https://www.ncbi.nlm.nih.gov/pubmed/32397312
http://dx.doi.org/10.3390/ijms21093346
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