RRC ID 53994
著者 Kondo D, Noguchi A, Takahashi I, Kubota H, Yano T, Sato Y, Toyono M, Sawaishi Y, Takahashi T.
タイトル A novel ZC4H2 gene mutation, K209N, in Japanese siblings with arthrogryposis multiplex congenita and intellectual disability: characterization of the K209N mutation and clinical findings.
ジャーナル Brain Dev
Abstract OBJECTIVE:To reveal a molecular lesion in the ZC4H2 gene in a Japanese family with arthrogryposis multiplex congenita (AMC) and intellectual disability (ID), and to characterize clinical features of patients with ZC4H2 gene mutations through a literature review.
PATIENTS:The probands are male siblings. The elder brother is an 11-year-old boy who showed AMC and ID and frequent postprandial hypoglycemia since 3 years of age. The younger brother also showed AMC, ID, and subclinical postprandial hypoglycemia. The boys' mother also showed a minor malformation of the left toes.
METHOD AND RESULT:Using Sanger sequencing, a hemizygous one base substitution designated c.627G > C, which is predicted to substitute asparagine for lysine at amino acid residue 209 (K209N), was identified in the siblings. The mother was heterozygous for this mutation. In silico analysis predicted K209N to be a constituent of a motif required for subcellular localization of the ZC4H2 protein in the nucleus. Transient expression studies of subcellular localization in COS-7 cells showed that compared to the wild-type protein, the transport of the mutant protein into the nucleus was inhibited, thus confirming K209N as a molecular lesion in this family. The literature reviews revealed postprandial hypoglycemia as a new clinical feature that should be considered in ZC4H2 gene-mutation disorders.
CONCLUSION:A Japanese family with AMC and ID caused by a novel ZC4H2 gene mutation was reported. Hypoglycemia should be considered one of the features in this disorder.
巻・号 40(9)
ページ 760-767
公開日 2018-10-1
DOI 10.1016/j.braindev.2018.05.003
PII S0387-7604(18)30203-1
PMID 29803542
MeSH Arthrogryposis / genetics* Arthrogryposis / pathology Arthrogryposis / physiopathology Carrier Proteins / genetics* Carrier Proteins / metabolism Cell Line Child Humans Intellectual Disability / genetics* Intellectual Disability / pathology Intellectual Disability / physiopathology Intracellular Signaling Peptides and Proteins Male Mutation, Missense* Nuclear Proteins Phenotype Siblings
IF 1.504
引用数 5
リソース情報
ヒト・動物細胞 COS-7(RCB0539)