Ekhilevitch N, Kurolap A, Oz-Levi D, Mory A, Hershkovitz T, Ast G, Mandel H, Baris H N
The Genetics Institute, Rambam Health Care Campus, Haifa, Israel.
Department of Human Molecular Genetics and Biochemistry, Sackler Faculty of Medicine, Tel-Aviv University, Tel-Aviv, Israel.
Clin Genet. 2016 Jul;90(1):84-9. doi: 10.1111/cge.12707. Epub 2016 Jan 20.
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.
先天性多发性关节挛缩症(AMC)的特征是出生时出现异质性、非进行性的多个关节挛缩。我们报告了一个近亲通婚的以色列德鲁兹家族,家族中有多名成员患有AMC。家族内可变的表型及推测的常染色体隐性遗传促使我们通过全外显子组测序进行分子诊断。变异分析聚焦于罕见的纯合变化,结果在MYBPC1基因(NM_002465:c.556G>A,p.E286K)中发现了一个错义变异,该变异影响外显子8的最后一个核苷酸。这个新变异在常见变异数据库中未被观察到,并且在这个大家庭中按预期进行了共分离。MYBPC1编码一种慢骨骼肌亚型,对肌肉收缩至关重要。该基因的杂合突变与1b型和2型远端关节挛缩症相关,而一个纯合无义突变在一个患有致死性先天性挛缩综合征4的家族中被发现。我们报告了一种新的、症状较轻的MYBPC1纯合表型。