Expanding the MYBPC1 phenotypic spectrum: a novel homozygous mutation causes arthrogryposis multiplex congenita

Arthrogryposis multiplex congenita (AMC) is characterized by heterogeneous nonprogressive multiple joint contractures appearing at birth. We present a consanguineous Israeli‐Druze family with several members presenting with AMC. A variable intra‐familial phenotype and pected autosomal recessive inhe...

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Veröffentlicht in:Clinical genetics 2016-07, Vol.90 (1), p.84-89
Hauptverfasser: Ekhilevitch, N., Kurolap, A., Oz-Levi, D., Mory, A., Hershkovitz, T., Ast, G., Mandel, H., Baris, H.N.
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Sprache:eng
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Zusammenfassung:Arthrogryposis multiplex congenita (AMC) is characterized by heterogeneous nonprogressive multiple joint contractures appearing at birth. We present a consanguineous Israeli‐Druze family with several members presenting with AMC. A variable intra‐familial phenotype and pected autosomal recessive inheritance prompted molecular diagnosis by whole‐exome sequencing. Variant analysis focused on rare homozygous changes, revealed a missense variant in MYBPC1, NM_002465:c.556G>A (p.E286K), affecting the last nucleotide of Exon 8. This novel variant was not observed in the common variant databases and co‐segregated as expected within the extended family. MYBPC1 encodes a slow skeletal muscle isoform, essential for muscle contraction. Heterozygous mutations in this gene are associated with distal arthrogryposis types 1b and 2, whereas a homozygous nonsense mutation is implicated in one family with lethal congenital contractural syndrome 4. We present a novel milder MYBPC1 homozygous phenotype.
ISSN:0009-9163
1399-0004
DOI:10.1111/cge.12707