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.

Human Genetics
|May 17, 2023
PubMed

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.

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