DST variants are responsible for neurogenic arthrogryposis multiplex congenita enlarging the spectrum of type VI hereditary sensory autonomic neuropathy

Author:

Capri Yline12ORCID,Bourmance Lucas2,Dupont Céline3,Saint‐Frison Marie‐Hélène4,Guimiot Fabien45,Grotto Sarah6,Chitrit Yvon7,Laquerrière Annie8,Melki Judith2ORCID

Affiliation:

1. Clinical Genetics Unit, AP‐HP Nord Hôpital Robert Debré Paris France

2. Institut National de la Santé et de la Recherche Médicale (INSERM), UMR‐1195, Université Paris Saclay Le Kremlin Bicêtre France

3. Cytogenetics Unit, AP‐HP Nord Hôpital Robert Debré Paris France

4. Foetopathology Unit, AP‐HP Nord Hôpital Robert Debré Paris France

5. INSERM UMR‐1141, Université Paris Nord, Hôpital Robert Debré Paris France

6. Maternité Port‐Royal, AP‐HP Centre Université Paris Cité, Hôpital Cochin Paris France

7. Obstetric Department, AP‐HP Nord Hôpital Robert Debré Paris France

8. Department of Pathology Normandie Université, INSERM U1245, Rouen University Hospital Rouen France

Abstract

AbstractArthrogryposis multiplex congenita (AMC) is a developmental condition characterized by multiple joint contractures resulting from reduced or absent fetal movements. Through whole‐exome sequencing combined with arrayCGH from DNA of a fetus presenting with early onset AMC, we identified biallelic loss of function variants in Dystonin (DST): a stop gain variant (NM_001144769.5:c.12208G > T:p.(Glu4070Ter)) on the neuronal isoform and a 175 kb microdeletion including exons 25–96 of this isoform on the other allele [NC_000006.11:g.(56212278_56323554)_(56499398_56507586)del]. Transmission electron microscopy of the sciatic nerve revealed abnormal morphology of the peripheral nerve with severe hypomyelination associated with dramatic reduction of fiber density which highlights the critical role of DST in peripheral nerve axonogenesis during development in human. Variants in the neuronal isoforms of DST cause hereditary sensory and autonomic neuropathy which has been reported in several unrelated families with highly variable age of onset from fetal to adult onset. Our data enlarge the disease mechanisms of neurogenic AMC.

Funder

French Muscular Dystrophy Association

Institut National de la Santé et de la Recherche Médicale

Publisher

Wiley

Subject

Genetics (clinical),Genetics

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