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Published on: August 15, 2019
Molecular impacts of Meier-Gorlin syndrome mutations on human origin licensing
Ran Yang1, Olivia Hunker1, Jenna Kim1
1Department of Molecular Biophysics and Biochemistry, Yale University, New Haven, Connecticut, USA.
Abstract:
Meier-Gorlin syndrome (MGS) is a form of primordial dwarfism linked to mutations in DNA replication initiation factors. Many MGS variants affect proteins required for the first step of replication initiation-the licensing of replication origins-during which the origin recognition complex (ORC), CDC6, and CDT1 cooperatively load MCM2-7 complexes onto DNA as an MCM double hexamer. The specific impacts of MGS mutations on origin licensing remain poorly understood. In this study, we systematically analyze the effects of MGS-linked missense mutations in core domains of human origin licensing factors in a fully reconstituted in vitro MCM loading system. Our results show that MGS mutations inhibit origin licensing by blocking MCM recruitment or loading at discrete but distinct stages of the reaction. MGS mutations in ORC and CDC6 impair MCM recruitment by abrogating ATP-dependent DNA binding or the maturation of recruited MCM into a loaded single hexamer. MGS variants of CDT1 specifically reduce MCM recruitment, whereas disease mutations in MCM subunits support ORC-mediated MCM hexamer recruitment but hinder their stable deposition onto DNA. Our findings establish how MGS mutations perturb specific origin licensing steps and provide mechanistic insights into the molecular basis of MGS pathogenesis.
Insights
Meier-Gorlin syndrome (MGS) mutations disrupt DNA replication initiation by impairing the loading of MCM complexes. This study reveals how MGS variants affect specific steps in origin licensing, impacting DNA replication.
Area of Science:
- Molecular Biology
- Genetics
- Cell Biology
Background:
- Meier-Gorlin syndrome (MGS) is a primordial dwarfism linked to mutations in DNA replication initiation.
- Origin licensing, involving ORC, CDC6, and CDT1, is crucial for DNA replication initiation.
- The precise effects of MGS mutations on origin licensing are not well understood.
Purpose of the Study:
- To systematically analyze the impact of MGS-linked missense mutations on human origin licensing factors.
- To elucidate the molecular mechanisms by which MGS mutations perturb DNA replication initiation.
Main Methods:
- Utilized a reconstituted in vitro MCM loading system.
- Analyzed MGS-linked missense mutations in core domains of origin recognition complex (ORC), CDC6, CDT1, and MCM subunits.
Main Results:
- MGS mutations inhibit origin licensing by impeding MCM recruitment or loading.
- Mutations in ORC and CDC6 disrupt ATP-dependent DNA binding and MCM maturation.
- CDT1 variants reduce MCM recruitment, while MCM mutations hinder stable DNA deposition.
Conclusions:
- MGS mutations affect distinct stages of the origin licensing process.
- These findings provide mechanistic insights into the molecular basis of Meier-Gorlin syndrome pathogenesis.
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