» Articles » PMID: 36092876

Case Report: Identification of a Novel Missense Variant in a Chinese Family with MICPCH

Overview
Journal Front Genet
Date 2022 Sep 12
PMID 36092876
Authors
Affiliations
Soon will be listed here.
Abstract

Mental retardation and microcephaly with pontine and cerebellar hypoplasia (MICPCH) is a rare genetic disorder that results in varying levels of pontocerebellar hypoplasia, microcephaly, and severe intellectual disabilities. Prior genetic analyses have identified the gene as a driver of MICPCH. Herein, we analyzed a Chinese family with MICPCH. The index patient was an 8-year-old male. He and his 3-year-old brother suffered from microcephaly, pontocerebellar hypoplasia, serious mental retardation, ataxia, gait disorder, and inability to speak. Through a combination of whole-exome sequencing and subsequent Sanger sequencing, a novel X-linked missense mutation, c.1882G>C (p.D628H) in the gene, was identified in two siblings, as well as their mother and grandmother, who exhibited mild mental retardation. Other family members with negative genetic testing were normal. analyses indicated that this missense mutation was predicted to reduce CASK protein stability, disrupt the SRC homology 3 (SH3) domain, and abolish its function. In summary, we identified a novel missense variate in CASK associated with MICPCH. Our work facilitates the diagnosis of the disease in this family and broadens the gene variant spectrum of the in MICPCH patients.

Citing Articles

Diverse Clinical Phenotypes of -Related Disorders and Multiple Functional Domains of CASK Protein.

Mori T, Zhou M, Tabuchi K Genes (Basel). 2023; 14(8).

PMID: 37628707 PMC: 10454856. DOI: 10.3390/genes14081656.

References
1.
Carraro M, Monzon A, Chiricosta L, Reggiani F, Aspromonte M, Bellini M . Assessment of patient clinical descriptions and pathogenic variants from gene panel sequences in the CAGI-5 intellectual disability challenge. Hum Mutat. 2019; 40(9):1330-1345. PMC: 7341177. DOI: 10.1002/humu.23823. View

2.
Dimitratos S, Stathakis D, Nelson C, Woods D, Bryant P . The location of human CASK at Xp11.4 identifies this gene as a candidate for X-linked optic atrophy. Genomics. 1998; 51(2):308-9. DOI: 10.1006/geno.1998.5404. View

3.
Li Y, Wei Z, Yan Y, Wan Q, Du Q, Zhang M . Structure of Crumbs tail in complex with the PALS1 PDZ-SH3-GK tandem reveals a highly specific assembly mechanism for the apical Crumbs complex. Proc Natl Acad Sci U S A. 2014; 111(49):17444-9. PMC: 4267380. DOI: 10.1073/pnas.1416515111. View

4.
Burglen L, Chantot-Bastaraud S, Garel C, Milh M, Touraine R, Zanni G . Spectrum of pontocerebellar hypoplasia in 13 girls and boys with CASK mutations: confirmation of a recognizable phenotype and first description of a male mosaic patient. Orphanet J Rare Dis. 2012; 7:18. PMC: 3351739. DOI: 10.1186/1750-1172-7-18. View

5.
Hauer N, Popp B, Schoeller E, Schuhmann S, Heath K, Hisado-Oliva A . Clinical relevance of systematic phenotyping and exome sequencing in patients with short stature. Genet Med. 2018; 20(6):630-638. PMC: 5993671. DOI: 10.1038/gim.2017.159. View