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DNA Methylation Regulates CDK5R1 and NRBP1 to Exert Effects on Alcohol Dependence: Insights From Mendelian
Fuyuan Deng1, Junsheng Peng2, Siran Lai3
1Clinical Research and Big Data Laboratory, South China Research Center for Acupuncture and Moxibustion, Medical College of Acu-Moxi and Rehabilitation, Guangzhou University of Chinese Medicine, Guangzhou, China.
Abstract:
Alcohol dependence currently lacks targeted pharmacotherapies, underscoring the urgent need for novel therapeutic targets. Existing research on disease-associated DNA methylation changes and their gene regulatory effects remains inconsistent. To resolve this uncertainty, we applied the Mendelian randomization to elucidate causal mechanisms connecting druggable genes, epigenetic regulation and alcohol dependence development. Integrating MR, colocalization and mediation analyses, we leveraged genome-wide association study (GWAS) (FinnGen), eQTL (eQTLGen) and methylation (GoDMC) data. We assessed causal gene-alcohol dependence relationships, shared causal variants via colocalization and methylation-mediated regulatory mechanisms. Our integrative analysis identified 10 drug-targetable genes showing significant expression alterations in alcohol dependence (FDR < 0.05), with three genes (CDK5R1, CAMKK2 and NRBP1) demonstrating evidence of shared causal variants through colocalization. Epigenetic regulation was particularly evident at two methylation sites (cg07437263 and cg05102552) that indirectly influenced alcohol dependence risk by modulating CDK5R1 (63.92% mediation) and NRBP1 (95.12% mediation) expression. These findings reveal DNA methylation as a critical regulatory mechanism governing neuronal gene expression patterns in alcohol dependence pathogenesis. The strong mediation effects observed for CDK5R1 and NRBP1, coupled with their colocalization evidence, position these genes as promising candidates for both biomarker development and targeted therapeutic interventions in alcohol dependence. This investigation spotlights the regulatory function of DNA methylation on CDK5R1 and NRBP1 in alcohol dependence. It implies that CDK5R1 and NRBP1 could serve as potential clinical biomarkers or therapeutic targets for the early management of alcohol dependence.
Insights
Novel research reveals DNA methylation
Area of Science:
- Neuroscience
- Genetics
- Pharmacology
Background:
- Alcohol dependence lacks effective targeted treatments.
- Current understanding of gene regulation in alcohol dependence is inconsistent.
- Novel therapeutic targets are urgently needed.
Purpose of the Study:
- To identify causal links between druggable genes, DNA methylation, and alcohol dependence.
- To explore epigenetic mechanisms underlying alcohol dependence.
- To discover potential therapeutic targets for alcohol dependence.
Main Methods:
- Mendelian randomization (MR), colocalization, and mediation analyses were employed.
- Genome-wide association study (GWAS), eQTL, and methylation data were integrated.
- Causal gene-alcohol dependence relationships and methylation-mediated regulation were assessed.
Main Results:
- Ten drug-targetable genes showed altered expression in alcohol dependence.
- Three genes (CDK5R1, CAMKK2, NRBP1) had shared causal variants.
- DNA methylation at two sites significantly mediated the effect of CDK5R1 and NRBP1 on alcohol dependence risk.
Conclusions:
- DNA methylation is a key regulator of neuronal gene expression in alcohol dependence.
- CDK5R1 and NRBP1, regulated by DNA methylation, are promising therapeutic targets.
- These genes may serve as biomarkers for early alcohol dependence management.
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