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CNNM2 in schizophrenia: multilevel evidence of genetic susceptibility, magnesium homeostasis, neurodevelopment and
Yang Jin1, Lige Zhang1, Xiaoyi Yao2
1Department of Psychiatry, The Second Affiliated Hospital of Henan Medical University, Henan Mental Hospital, Xinxiang 453002, China; Department of Psychiatry, The Second Clinical College of Henan Medical University, Henan Medical University, Xinxiang 453003, China; Henan Key Lab of Biological Psychiatry, Henan Medical University, Xinxiang 453002, China.
Abstract:
Schizophrenia (SCZ) is a common psychiatric disorder with a complex, genetically and environmentally influenced etiology, but the specific pathogenesis remains unclear. In recent years, the SCZ susceptibility gene CNNM2 (encoding cyclin M2) located at the 10q24.32-33 locus has received widespread attention. The well-validated SCZ risk interval 10q24.32-33 harbors two independent risk variants: rs11191580 in NT5C2 (significantly associated with CNNM2 mRNA and protein levels) and rs7914558 in CNNM2. Results from functional genomic analyses indicate that lower CNNM2 expression is significantly associated with SCZ. Imaging genetics studies have demonstrated that carriers of risk alleles of CNNM2 SNPs exhibit alterations in brain structure. Animal model studies have revealed that Cnnm2 downregulation in mice leads to impairments in sensorimotor gating and cognitive function. As an Mg2+ transporter, CNNM2 primarily maintains systemic Mg2+ homeostasis. According to clinical studies, a proportion of patients with SCZ exhibit reduced Mg2+ concentrations in plasma and cerebrospinal fluid. CNNM2 dysfunction may contribute to the pathology of SCZ by disrupting Mg2+ homeostasis, thereby affecting neurodevelopment and synaptic plasticity. A systematic consolidation of current evidence supporting the involvement of CNNM2 in SCZ pathogenesis provides a direction for further investigation of the pathological mechanisms underlying this disease, and for identification of novel targets for clinical intervention..
Insights
Schizophrenia (SCZ) risk is linked to the CNNM2 gene, which regulates magnesium (Mg2+). Lower CNNM2 expression and disrupted Mg2+ homeostasis may contribute to SCZ pathogenesis and neurodevelopmental issues.
Area of Science:
- Neuroscience
- Genetics
- Psychiatry
Background:
- Schizophrenia (SCZ) pathogenesis is complex, influenced by genetic and environmental factors.
- The CNNM2 gene, located at the 10q24.32-33 locus, is a significant SCZ susceptibility gene.
- SCZ risk variants rs11191580 (in NT5C2) and rs7914558 (in CNNM2) are identified within this locus.
Purpose of the Study:
- To consolidate evidence linking CNNM2 to SCZ pathogenesis.
- To explore the role of CNNM2 in Mg2+ homeostasis and its implications for SCZ.
- To identify potential therapeutic targets for SCZ.
Main Methods:
- Functional genomic analyses to assess CNNM2 expression in SCZ.
- Imaging genetics studies to examine brain structure in SCZ risk allele carriers.
- Animal model studies to evaluate the effects of Cnnm2 downregulation on behavior and cognition.
Main Results:
- Lower CNNM2 expression is significantly associated with SCZ.
- CNNM2 single nucleotide polymorphisms (SNPs) are linked to altered brain structure.
- Cnnm2 downregulation in mice impairs sensorimotor gating and cognitive function.
- Reduced Mg2+ concentrations are observed in some SCZ patients.
Conclusions:
- CNNM2 dysfunction may contribute to SCZ by disrupting Mg2+ homeostasis.
- Disrupted Mg2+ homeostasis affects neurodevelopment and synaptic plasticity in SCZ.
- CNNM2 represents a promising target for future SCZ research and clinical interventions.
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