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Biomed Res Int ; 2020: 2149342, 2020.
Article in English | MEDLINE | ID: mdl-32566668

ABSTRACT

INTRODUCTION: Distal arthrogryposis type 5D (DA5D) is an autosomal recessive disease. The clinical symptoms include contractures of the joints of limbs, especially camptodactyly of the hands and/or feet, unilateral ptosis, a round-shaped face, arched eyebrows, and micrognathia, without ophthalmoplegia. ECEL1 is a DA5D causative gene that encodes a membrane-bound metalloprotease. ECEL1 plays important roles in the final axonal arborization of motor nerves in limb skeletal muscles and neuromuscular junction formation during prenatal development. METHODS: A DA5D family with webbing of the elbows and fingers was recruited. We performed whole-exome sequencing (WES) and filtered mutations by disease-causing genes of arthrogryposis multiplex congenita (AMC). Mutational analysis and cosegregation confirmation were then performed. RESULTS: We identified novel compound heterozygous mutations of ECEL1 (NM_004826: c.69C>A, p.C23∗ and c.1810G>A, p.G604R) in the proband. CONCLUSIONS: We detected causative mutations in a DA5D family, expanding the spectrum of known ECEL1 mutations and contributing to the clinical diagnosis of DA5D.


Subject(s)
Arthrogryposis , Metalloendopeptidases/genetics , Mutation/genetics , Ophthalmoplegia , Retinal Diseases , Arthrogryposis/genetics , Arthrogryposis/pathology , Arthrogryposis/physiopathology , Child , DNA Mutational Analysis , Humans , Male , Ophthalmoplegia/genetics , Ophthalmoplegia/pathology , Ophthalmoplegia/physiopathology , Pedigree , Polymorphism, Single Nucleotide/genetics , Retinal Diseases/genetics , Retinal Diseases/pathology , Retinal Diseases/physiopathology
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