Related Experiment Video
Updated: Jul 30, 2025

In Vivo Functional Study of Disease-associated Rare Human Variants Using Drosophila
Published on: August 20, 2019
De novo MCM6 variants in neurodevelopmental disorders: a recognizable phenotype related to zinc binding residues
Daphne J Smits1, Rachel Schot2,3, Cristiana A Popescu2
1Department of Clinical Genetics, Erasmus University Medical Center, 3015 GD, Rotterdam, The Netherlands. d.smits@erasmusmc.nl.
Abstract:
The minichromosome maintenance (MCM) complex acts as a DNA helicase during DNA replication, and thereby regulates cell cycle progression and proliferation. In addition, MCM-complex components localize to centrosomes and play an independent role in ciliogenesis. Pathogenic variants in genes coding for MCM components and other DNA replication factors have been linked to growth and developmental disorders as Meier-Gorlin syndrome and Seckel syndrome. Trio exome/genome sequencing identified the same de novo MCM6 missense variant p.(Cys158Tyr) in two unrelated individuals that presented with overlapping phenotypes consisting of intra-uterine growth retardation, short stature, congenital microcephaly, endocrine features, developmental delay and urogenital anomalies. The identified variant affects a zinc binding cysteine in the MCM6 zinc finger signature. This domain, and specifically cysteine residues, are essential for MCM-complex dimerization and the induction of helicase activity, suggesting a deleterious effect of this variant on DNA replication. Fibroblasts derived from the two affected individuals showed defects both in ciliogenesis and cell proliferation. We additionally traced three unrelated individuals with de novo MCM6 variants in the oligonucleotide binding (OB)-fold domain, presenting with variable (neuro)developmental features including autism spectrum disorder, developmental delay, and epilepsy. Taken together, our findings implicate de novo MCM6 variants in neurodevelopmental disorders. The clinical features and functional defects related to the zinc binding residue resemble those observed in syndromes related to other MCM components and DNA replication factors, while de novo OB-fold domain missense variants may be associated with more variable neurodevelopmental phenotypes. These data encourage consideration of MCM6 variants in the diagnostic arsenal of NDD.
Insights
De novo variants in the MCM6 gene are linked to neurodevelopmental disorders. These genetic changes impact DNA replication and cell functions, affecting growth and development.
Area of Science:
- Genetics
- Molecular Biology
- Developmental Biology
Background:
- The minichromosome maintenance (MCM) complex is crucial for DNA replication and cell cycle regulation.
- MCM complex components also play a role in ciliogenesis.
- Pathogenic variants in MCM genes are associated with growth and developmental disorders.
Purpose of the Study:
- To investigate the role of de novo MCM6 variants in neurodevelopmental disorders.
- To characterize the functional impact of specific MCM6 variants on DNA replication and ciliogenesis.
Main Methods:
- Trio exome/genome sequencing was used to identify de novo MCM6 variants.
- Functional studies were performed on patient-derived fibroblasts to assess ciliogenesis and cell proliferation.
- Analysis of variant effects on protein domains essential for MCM complex function.
Main Results:
- Identified a recurrent de novo MCM6 missense variant (p.(Cys158Tyr)) in two individuals with overlapping growth and developmental phenotypes.
- The identified variant affects a critical zinc-binding cysteine in the MCM6 zinc finger domain, impairing DNA replication.
- Patient-derived fibroblasts showed defects in both ciliogenesis and cell proliferation.
- Additional de novo MCM6 variants in the OB-fold domain were associated with variable neurodevelopmental features, including autism spectrum disorder, developmental delay, and epilepsy.
Conclusions:
- De novo MCM6 variants are implicated in neurodevelopmental disorders.
- Variants affecting the zinc-binding domain cause severe phenotypes resembling other MCM-related syndromes.
- Variants in the OB-fold domain are associated with more variable neurodevelopmental outcomes.
- MCM6 variants should be considered in the genetic diagnosis of neurodevelopmental disorders.
More Related Videos
08:22A Novel Strategy Combining Array-CGH, Whole-exome Sequencing and In Utero Electroporation in Rodents to Identify Causative Genes for Brain Malformations
Published on: December 1, 2017
05:51A Strategy to Identify de Novo Mutations in Common Disorders such as Autism and Schizophrenia
Published on: June 15, 2011