The clinical-phenotype continuum in DYNC1H1-related disorders—genomic profiling and proposal for a novel classification

Abstract Mutations in the cytoplasmic dynein 1 heavy chain gene ( DYNC1H1 ) have been identified in rare neuromuscular (NMD) and neurodevelopmental (NDD) disorders such as spinal muscular atrophy with lower extremity dominance (SMALED) and autosomal dominant mental retardation syndrome 13 (MRD13). P...

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Váldodahkkit: Lena‐Luise Becker, Hormos Salimi Dafsari, Jens Schallner, Dalia Abdin, Michael Seifert, Florence Petit, Thomas Smol, Levinus A. Bok, Lance H. Rodan, Ingrid P.C. Krapels, Stephanie Spranger, Bernhard Weschke, Katherine Johnson, Volker Straub, Angela M. Kaindl, Nataliya Di Donato, Maja von der Hagen, Sebahattin Çırak
Materiálatiipa: Artigo
Giella:eaŋgalasgiella
Almmustuhtton: 2020
Liŋkkat:https://doi.org/10.1038/s10038-020-0803-1
https://www.nature.com/articles/s10038-020-0803-1.pdf
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access_facet Acesso Aberto
author Lena‐Luise Becker
Hormos Salimi Dafsari
Jens Schallner
Dalia Abdin
Michael Seifert
Florence Petit
Thomas Smol
Levinus A. Bok
Lance H. Rodan
Ingrid P.C. Krapels
Stephanie Spranger
Bernhard Weschke
Katherine Johnson
Volker Straub
Angela M. Kaindl
Nataliya Di Donato
Maja von der Hagen
Sebahattin Çırak
author_facet Lena‐Luise Becker
Hormos Salimi Dafsari
Jens Schallner
Dalia Abdin
Michael Seifert
Florence Petit
Thomas Smol
Levinus A. Bok
Lance H. Rodan
Ingrid P.C. Krapels
Stephanie Spranger
Bernhard Weschke
Katherine Johnson
Volker Straub
Angela M. Kaindl
Nataliya Di Donato
Maja von der Hagen
Sebahattin Çırak
cited_by_count_is 45
collection OpenAlex
description Abstract Mutations in the cytoplasmic dynein 1 heavy chain gene ( DYNC1H1 ) have been identified in rare neuromuscular (NMD) and neurodevelopmental (NDD) disorders such as spinal muscular atrophy with lower extremity dominance (SMALED) and autosomal dominant mental retardation syndrome 13 (MRD13). Phenotypes and genotypes of ten pediatric patients with pathogenic DYNC1H1 variants were analyzed in a multi-center study. Data mining of large-scale genomic variant databases was used to investigate domain-specific vulnerability and conservation of DYNC1H1 . We identified ten patients with nine novel mutations in the DYNC1H1 gene. These patients exhibit a broad spectrum of clinical findings, suggesting an overlapping disease manifestation with intermixed phenotypes ranging from neuropathy (peripheral nervous system, PNS) to severe intellectual disability (central nervous system, CNS). Genomic profiling of healthy and patient variant datasets underlines the domain-specific effects of genetic variation in DYNC1H1 , specifically on toleration towards missense variants in the linker domain. A retrospective analysis of all published mutations revealed domain-specific genotype–phenotype correlations, i.e., mutations in the dimerization domain with reductions in lower limb strength in DYNC1H1 –NMD and motor domain with cerebral malformations in DYNC1H1 –NDD. We highlight that the current classification into distinct disease entities does not sufficiently reflect the clinical disease manifestation that clinicians face in the diagnostic work-up of DYNC1H1 -related disorders. We propose a novel clinical classification for DYNC1H1 -related disorders encompassing a spectrum from DYNC1H1– NMD with an exclusive PNS phenotype to DYNC1H1 –NDD with concomitant CNS involvement.
format Artigo
frbr_group_id_str doi-10.1038/s10038-020-0803-1
id openalex-W3048793519
institution Charité - Universitätsmedizin Berlin
issn_str 1434-5161
issue_str 11
journal_title_str Journal of Human Genetics
language eng
publishDate 2020
publisher_str Springer Nature
spellingShingle The clinical-phenotype continuum in DYNC1H1-related disorders—genomic profiling and proposal for a novel classification
Lena‐Luise Becker
Hormos Salimi Dafsari
Jens Schallner
Dalia Abdin
Michael Seifert
Florence Petit
Thomas Smol
Levinus A. Bok
Lance H. Rodan
Ingrid P.C. Krapels
Stephanie Spranger
Bernhard Weschke
Katherine Johnson
Volker Straub
Angela M. Kaindl
Nataliya Di Donato
Maja von der Hagen
Sebahattin Çırak
title The clinical-phenotype continuum in DYNC1H1-related disorders—genomic profiling and proposal for a novel classification
title_full The clinical-phenotype continuum in DYNC1H1-related disorders—genomic profiling and proposal for a novel classification
title_fullStr The clinical-phenotype continuum in DYNC1H1-related disorders—genomic profiling and proposal for a novel classification
title_full_unstemmed The clinical-phenotype continuum in DYNC1H1-related disorders—genomic profiling and proposal for a novel classification
title_short The clinical-phenotype continuum in DYNC1H1-related disorders—genomic profiling and proposal for a novel classification
topic_facet Spinal muscular atrophy
Phenotype
Missense mutation
Dominance (genetics)
Genetics
Disease
Medicine
Biology
Bioinformatics
Gene
Neuroscience
Pathology
url https://doi.org/10.1038/s10038-020-0803-1
https://www.nature.com/articles/s10038-020-0803-1.pdf
volume_str 65