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De Novo Missense Substitutions in the Gene Encoding CDK8, a Regulator of the Mediator Complex, Cause a Syndromic
Eduardo Calpena1, Alexia Hervieu2, Teresa Kaserer2
1Clinical Genetics Group, MRC Weatherall Institute of Molecular Medicine, University of Oxford, Oxford OX3 9DS, UK.
Abstract:
The Mediator is an evolutionarily conserved, multi-subunit complex that regulates multiple steps of transcription. Mediator activity is regulated by the reversible association of a four-subunit module comprising CDK8 or CDK19 kinases, together with cyclin C, MED12 or MED12L, and MED13 or MED13L. Mutations in MED12, MED13, and MED13L were previously identified in syndromic developmental disorders with overlapping phenotypes. Here, we report CDK8 mutations (located at 13q12.13) that cause a phenotypically related disorder. Using whole-exome or whole-genome sequencing, and by international collaboration, we identified eight different heterozygous missense CDK8 substitutions, including 10 shown to have arisen de novo, in 12 unrelated subjects; a recurrent mutation, c.185C>T (p.Ser62Leu), was present in five individuals. All predicted substitutions localize to the ATP-binding pocket of the kinase domain. Affected individuals have overlapping phenotypes characterized by hypotonia, mild to moderate intellectual disability, behavioral disorders, and variable facial dysmorphism. Congenital heart disease occurred in six subjects; additional features present in multiple individuals included agenesis of the corpus callosum, ano-rectal malformations, seizures, and hearing or visual impairments. To evaluate the functional impact of the mutations, we measured phosphorylation at STAT1-Ser727, a known CDK8 substrate, in a CDK8 and CDK19 CRISPR double-knockout cell line transfected with wild-type (WT) or mutant CDK8 constructs. These experiments demonstrated a reduction in STAT1 phosphorylation by all mutants, in most cases to a similar extent as in a kinase-dead control. We conclude that missense mutations in CDK8 cause a developmental disorder that has phenotypic similarity to syndromes associated with mutations in other subunits of the Mediator kinase module, indicating probable overlap in pathogenic mechanisms.
Insights
New research identifies CDK8 gene mutations causing developmental disorders with symptoms like intellectual disability and heart defects. These findings link CDK8 to other Mediator complex gene mutations in related syndromes.
Area of Science:
- Genetics
- Molecular Biology
- Developmental Biology
Background:
- The Mediator complex is crucial for regulating gene transcription.
- A specific module of the Mediator complex, including CDK8, is vital for its activity.
- Mutations in other Mediator complex subunits (MED12, MED13) are linked to developmental disorders.
Purpose of the Study:
- To investigate the role of CDK8 mutations in causing developmental disorders.
- To characterize the phenotype associated with CDK8 mutations.
- To understand the functional consequences of these mutations.
Main Methods:
- Whole-exome and whole-genome sequencing were used to identify mutations.
- International collaboration was employed to gather a cohort of affected individuals.
- Functional studies in cell lines assessed the impact of mutations on CDK8 activity.
Main Results:
- Eight distinct heterozygous missense CDK8 mutations were identified in 12 individuals.
- Mutations were found to be de novo in 10 cases, with one recurrent mutation.
- Affected individuals presented with hypotonia, intellectual disability, behavioral issues, and congenital heart disease.
- Mutant CDK8 showed reduced phosphorylation of the substrate STAT1-Ser727 in vitro.
Conclusions:
- Missense mutations in CDK8 cause a distinct developmental disorder.
- The disorder shares phenotypic overlap with syndromes caused by mutations in other Mediator kinase module subunits.
- These findings suggest shared pathogenic mechanisms in Mediator complex-related developmental disorders.
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