Cargando…

Phenotypical and Myopathological Consequences of Compound Heterozygous Missense and Nonsense Variants in SLC18A3

Background: Presynaptic forms of congenital myasthenic syndromes (CMS) due to pathogenic variants in SLC18A3 impairing the synthesis and recycling of acetylcholine (ACh) have recently been described. SLC18A3 encodes the vesicular ACh transporter (VAChT), modulating the active transport of ACh at the...

Descripción completa

Detalles Bibliográficos
Autores principales: Della Marina, Adela, Arlt, Annabelle, Schara-Schmidt, Ulrike, Depienne, Christel, Gangfuß, Andrea, Kölbel, Heike, Sickmann, Albert, Freier, Erik, Kohlschmidt, Nicolai, Hentschel, Andreas, Weis, Joachim, Czech, Artur, Grüneboom, Anika, Roos, Andreas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8700530/
https://www.ncbi.nlm.nih.gov/pubmed/34943989
http://dx.doi.org/10.3390/cells10123481
_version_ 1784620779136090112
author Della Marina, Adela
Arlt, Annabelle
Schara-Schmidt, Ulrike
Depienne, Christel
Gangfuß, Andrea
Kölbel, Heike
Sickmann, Albert
Freier, Erik
Kohlschmidt, Nicolai
Hentschel, Andreas
Weis, Joachim
Czech, Artur
Grüneboom, Anika
Roos, Andreas
author_facet Della Marina, Adela
Arlt, Annabelle
Schara-Schmidt, Ulrike
Depienne, Christel
Gangfuß, Andrea
Kölbel, Heike
Sickmann, Albert
Freier, Erik
Kohlschmidt, Nicolai
Hentschel, Andreas
Weis, Joachim
Czech, Artur
Grüneboom, Anika
Roos, Andreas
author_sort Della Marina, Adela
collection PubMed
description Background: Presynaptic forms of congenital myasthenic syndromes (CMS) due to pathogenic variants in SLC18A3 impairing the synthesis and recycling of acetylcholine (ACh) have recently been described. SLC18A3 encodes the vesicular ACh transporter (VAChT), modulating the active transport of ACh at the neuromuscular junction, and homozygous loss of VAChT leads to lethality. Methods: Exome sequencing (ES) was carried out to identify the molecular genetic cause of the disease in a 5-year-old male patient and histological, immunofluorescence as well as electron- and CARS-microscopic studies were performed to delineate the muscle pathology, which has so far only been studied in VAChT-deficient animal models. Results: ES unraveled compound heterozygous missense and nonsense variants (c.315G>A, p.Trp105* and c.1192G>C, p.Asp398His) in SLC18A3. Comparison with already-published cases suggests a more severe phenotype including impaired motor and cognitive development, possibly related to a more severe effect of the nonsense variant. Therapy with pyridostigmine was only partially effective while 3,4 diaminopyridine showed no effect. Microscopic investigation of the muscle biopsy revealed reduced fibre size and a significant accumulation of lipid droplets. Conclusions: We suggest that nonsense variants have a more detrimental impact on the clinical manifestation of SLC18A3-associated CMS. The impact of pathogenic SLC18A3 variants on muscle fibre integrity beyond the effect of denervation is suggested by the build-up of lipid aggregates. This in turn implicates the importance of proper VAChT-mediated synthesis and recycling of ACh for lipid homeostasis in muscle cells. This hypothesis is further supported by the pathological observations obtained in previously published VAChT-animal models.
format Online
Article
Text
id pubmed-8700530
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-87005302021-12-24 Phenotypical and Myopathological Consequences of Compound Heterozygous Missense and Nonsense Variants in SLC18A3 Della Marina, Adela Arlt, Annabelle Schara-Schmidt, Ulrike Depienne, Christel Gangfuß, Andrea Kölbel, Heike Sickmann, Albert Freier, Erik Kohlschmidt, Nicolai Hentschel, Andreas Weis, Joachim Czech, Artur Grüneboom, Anika Roos, Andreas Cells Article Background: Presynaptic forms of congenital myasthenic syndromes (CMS) due to pathogenic variants in SLC18A3 impairing the synthesis and recycling of acetylcholine (ACh) have recently been described. SLC18A3 encodes the vesicular ACh transporter (VAChT), modulating the active transport of ACh at the neuromuscular junction, and homozygous loss of VAChT leads to lethality. Methods: Exome sequencing (ES) was carried out to identify the molecular genetic cause of the disease in a 5-year-old male patient and histological, immunofluorescence as well as electron- and CARS-microscopic studies were performed to delineate the muscle pathology, which has so far only been studied in VAChT-deficient animal models. Results: ES unraveled compound heterozygous missense and nonsense variants (c.315G>A, p.Trp105* and c.1192G>C, p.Asp398His) in SLC18A3. Comparison with already-published cases suggests a more severe phenotype including impaired motor and cognitive development, possibly related to a more severe effect of the nonsense variant. Therapy with pyridostigmine was only partially effective while 3,4 diaminopyridine showed no effect. Microscopic investigation of the muscle biopsy revealed reduced fibre size and a significant accumulation of lipid droplets. Conclusions: We suggest that nonsense variants have a more detrimental impact on the clinical manifestation of SLC18A3-associated CMS. The impact of pathogenic SLC18A3 variants on muscle fibre integrity beyond the effect of denervation is suggested by the build-up of lipid aggregates. This in turn implicates the importance of proper VAChT-mediated synthesis and recycling of ACh for lipid homeostasis in muscle cells. This hypothesis is further supported by the pathological observations obtained in previously published VAChT-animal models. MDPI 2021-12-09 /pmc/articles/PMC8700530/ /pubmed/34943989 http://dx.doi.org/10.3390/cells10123481 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Della Marina, Adela
Arlt, Annabelle
Schara-Schmidt, Ulrike
Depienne, Christel
Gangfuß, Andrea
Kölbel, Heike
Sickmann, Albert
Freier, Erik
Kohlschmidt, Nicolai
Hentschel, Andreas
Weis, Joachim
Czech, Artur
Grüneboom, Anika
Roos, Andreas
Phenotypical and Myopathological Consequences of Compound Heterozygous Missense and Nonsense Variants in SLC18A3
title Phenotypical and Myopathological Consequences of Compound Heterozygous Missense and Nonsense Variants in SLC18A3
title_full Phenotypical and Myopathological Consequences of Compound Heterozygous Missense and Nonsense Variants in SLC18A3
title_fullStr Phenotypical and Myopathological Consequences of Compound Heterozygous Missense and Nonsense Variants in SLC18A3
title_full_unstemmed Phenotypical and Myopathological Consequences of Compound Heterozygous Missense and Nonsense Variants in SLC18A3
title_short Phenotypical and Myopathological Consequences of Compound Heterozygous Missense and Nonsense Variants in SLC18A3
title_sort phenotypical and myopathological consequences of compound heterozygous missense and nonsense variants in slc18a3
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8700530/
https://www.ncbi.nlm.nih.gov/pubmed/34943989
http://dx.doi.org/10.3390/cells10123481
work_keys_str_mv AT dellamarinaadela phenotypicalandmyopathologicalconsequencesofcompoundheterozygousmissenseandnonsensevariantsinslc18a3
AT arltannabelle phenotypicalandmyopathologicalconsequencesofcompoundheterozygousmissenseandnonsensevariantsinslc18a3
AT scharaschmidtulrike phenotypicalandmyopathologicalconsequencesofcompoundheterozygousmissenseandnonsensevariantsinslc18a3
AT depiennechristel phenotypicalandmyopathologicalconsequencesofcompoundheterozygousmissenseandnonsensevariantsinslc18a3
AT gangfußandrea phenotypicalandmyopathologicalconsequencesofcompoundheterozygousmissenseandnonsensevariantsinslc18a3
AT kolbelheike phenotypicalandmyopathologicalconsequencesofcompoundheterozygousmissenseandnonsensevariantsinslc18a3
AT sickmannalbert phenotypicalandmyopathologicalconsequencesofcompoundheterozygousmissenseandnonsensevariantsinslc18a3
AT freiererik phenotypicalandmyopathologicalconsequencesofcompoundheterozygousmissenseandnonsensevariantsinslc18a3
AT kohlschmidtnicolai phenotypicalandmyopathologicalconsequencesofcompoundheterozygousmissenseandnonsensevariantsinslc18a3
AT hentschelandreas phenotypicalandmyopathologicalconsequencesofcompoundheterozygousmissenseandnonsensevariantsinslc18a3
AT weisjoachim phenotypicalandmyopathologicalconsequencesofcompoundheterozygousmissenseandnonsensevariantsinslc18a3
AT czechartur phenotypicalandmyopathologicalconsequencesofcompoundheterozygousmissenseandnonsensevariantsinslc18a3
AT gruneboomanika phenotypicalandmyopathologicalconsequencesofcompoundheterozygousmissenseandnonsensevariantsinslc18a3
AT roosandreas phenotypicalandmyopathologicalconsequencesofcompoundheterozygousmissenseandnonsensevariantsinslc18a3