Aug 2026· Journal of Medical Genetics· 0 citations· 21 references
Medicine
TL;DR
It is demonstrated that early-onset MORC2-associated disorders segregate into two principal neurological phenotypes: a predominantly neuromuscular form and a central nervous system-predominant form.
Abstract
Background
Pathogenic missense variants in the MORC2 gene are associated with two distinct disorders: Charcot-Marie-Tooth disease type 2Z (CMT2Z) and the recently described DIGFAN (developmental delay, impaired growth, dysmorphic facies and axonal neuropathy) phenotype, which encompasses a broad range of clinical manifestations that vary significantly between individuals.
Methods
Clinical and imaging data from 16 patients were collected. Western blot analysis was performed on 10 identified variants in affected patients as well as on two novel variants without clinical data. Those missense variants were introduced into the wild-type vector transfected into HEK293T cells, and western blot analysis was performed to assess protein expression level.
Results
A total of 11 different missense variants in the MORC2 gene were identified in our cohort, including four novel variants. We demonstrate that early-onset MORC2-associated disorders segregate into two principal neurological phenotypes: a predominantly neuromuscular form and a central nervous system-predominant form. The p.Ser87Leu variant, which defines the neuromuscular cluster, was uniquely characterised by a significant reduction in MORC2 protein levels, distinguishing it mechanistically from other variants. Overall, western blot analysis revealed no statistically significant difference in protein expression levels between variants related to CMT2Z and DIGFAN cases.
Conclusion
A comparison of our patients with previously reported cases revealed an intriguing trend suggesting a probable dependence of the leading clinical features on specific variants in the MORC2 gene. Further accumulation of patient data is required to determine whether this observation correlates with other specific variants.
Background Hereditary hemorrhagic telangiectasia (HHT) is an autosomal dominant vascular disorder primarily caused by pathogenic variants in the ENG gene, leading to clinical manifestations including pulmonary arteriovenous malformation (PAVM), recurrent spontaneous nosebleeds, and other related symptoms. This study is aimed at investigating the clinical manifestations of members in four HHT1 families with PAVMs and analyze novel ENG variants. Methods Clinical evaluations, whole exome sequencing (WES), and Sanger sequencing were performed on the probands and their family members from Families 1 to 4. Bioinformatics programs were utilized to assess the pathogenicity of the candidate variants. Additionally, an in vitro minigene assay was conducted to examine the impact of the variant in Family 2 on RNA splicing, and Western blot was employed to validate the impact of the variant on protein expression and modification. Results Four ENG variants were identified: c.613del (exon 5), c.1428 + 2 T > C (intron 11), c.1498dup (exon 12), and c.322del (exon 3). The splice‐site variant c.1428 + 2 T > C, which has been reported as pathogenic in ClinVar, leads to aberrant ENG mRNA splicing with exon 11 skipping, resulting in a shorter protein (p.Lys438_Gln476del) with impaired glycosylation. Conclusion The splice‐site variant c.1428 + 2 T > C caused aberrant ENG mRNA splicing, leading to exon 11 skipping and producing a shorter protein with abnormal glycosylation (p.Lys438_Gln476del). The variants identified in Families 1, 3, and 4 (c.613delC, c.1498dupC, and c.322delG) are all frameshift variants that lead to premature termination of translation. This study expands the spectrum of ENG variants and provides insights into the pathogenesis of HHT1. These findings offer guidance for the early diagnosis for families affected by HHT1.
Yujing Gong, Tingmin Zhou, Xinru Fu et al.· Human Mutation· 0 citations
The findings support a possible domain‐related genotype–phenotype association for the role of ALG13 in neurodevelopmental disorders and provide additional developmental context for the role of ALG13 in neurodevelopmental disorders.
Song Su, Wandong Hu, Ying Ren et al.· Human Mutation· 0 citations
“hemiconvulsion-hemiplegia-epilepsy syndrome” is identified as a distinct feature and potential prognostic indicator for middle domain variants in DNM1L variants, which are predominantly missense, with the middle domain as a hotspot.
Han Xu, Chao-Long Xu, Ying Zou et al.· Frontiers in Neurology· 0 citations
Findings have enriched the mutational spectrum of the FBN1 gene among Chinese MFS patients and provided a basis for the genetic counseling and clinical management.
Renhua Wu, Lei Sun, Bao-Zhu Liu et al.· Zhonghua yi xue yi chuan xue...· 0 citations
CASK-related disorders may present with severe neurodevelopmental impairment and cerebral palsy–like phenotypes, even in the absence of characteristic neuroimaging findings, which should raise suspicion for CASK-related disorders.
I. Pacheva, Elena Timova, T. Todorov et al.· Frontiers in Psychiatry· 0 citations
There is moderate evidence that the two identified HARS1 variants are responsible for the recessive phenotype, suggesting that the allelic and clinical heterogeneity of HARS1‐related disease is expanded.
Christina Del Greco, Allison R. Cale, Karl Haeberlein et al.· Journal of the peripheral ne...· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.