Impact of Vitamin D Binding Protein Levels on Alzheimer's Disease: A Mendelian Randomization Study
Haihua Zhang1,2, Tao Wang3,4, Zhifa Han5,6,7
1National Engineering Laboratory of Internet Medical Diagnosis and Treatment Technology, Xuanwu Hospital, Capital Medical University, Beijing, China.
Abstract:
Until now, observational studies, randomized controlled trials (RCTs), and Mendelian randomization (MR) studies have explored the impact of vitamin D on Alzheimer's disease (AD), and reported inconsistent findings. In MR studies, the sensitivity analysis by removing GC rs2282679 variant highlighted no association of 25OHD levels with AD risk, which indicates that vitamin D-binding protein (DBP) encoded by GC may have distinct effects on AD risk. Here, we aim to clarify this assumption. We selected the GC rs2282679 variant associated with DBP levels (p = 3.30E-76) as the instrumental variable, and extracted the summary statistics of rs2282679 variant in multiple AD GWAS datasets from IGAP, Complex Trait Genetics (CTG) lab, and UK Biobank. We then performed a MR study to investigate the causal association between DBP levels and AD. In IGAP, MR analysis showed that the genetically DBP levels (per 1 standard deviation (SD) increase 50 mg/L) were significantly associated with reduced AD risk (OR = 0.63, 95% CI: 0.45-0.89, p = 0.009). Importantly, the estimates from two sensitivity analyses were consistent with the main estimate in terms of direction and magnitude. Meanwhile, we found no causal association between DBP levels and other four AD phenotypes in CTG lab and UK Biobank. In summary, we highlight the role of DBP levels in AD risk, and provide strong support evidence that DBP may be the therapeutic agent for the treatment of AD. Meanwhile, our findings clarify the assumption that DBP may drive the observed relationship between 25OHD levels and AD.
Insights
Vitamin D-binding protein (DBP) levels are linked to reduced Alzheimer's disease (AD) risk. This study suggests DBP, not just vitamin D, may be a therapeutic target for AD treatment.
Area of Science:
- Neuroscience
- Genetics
- Biochemistry
Background:
- Previous studies on vitamin D and Alzheimer's disease (AD) have yielded inconsistent results.
- Mendelian randomization (MR) studies suggest that vitamin D-binding protein (DBP) may have a distinct role in AD risk, separate from 25-hydroxyvitamin D (25OHD) levels.
Purpose of the Study:
- To investigate the causal association between DBP levels and Alzheimer's disease (AD) risk.
- To clarify whether DBP influences the observed relationship between 25OHD levels and AD.
Main Methods:
- Utilized a Mendelian randomization (MR) approach with the GC rs2282679 variant as an instrumental variable for DBP levels.
- Analyzed summary statistics from multiple Alzheimer's disease Genome-Wide Association Study (GWAS) datasets, including IGAP, CTG lab, and UK Biobank.
- Performed sensitivity analyses to ensure the robustness of the findings.
Main Results:
- Genetically determined DBP levels were significantly associated with a reduced risk of AD in the IGAP dataset (OR=0.63, p=0.009).
- Sensitivity analyses confirmed the main findings regarding the inverse association between DBP levels and AD risk.
- No causal association was found between DBP levels and other AD-related phenotypes in the CTG lab and UK Biobank datasets.
Conclusions:
- DBP levels play a significant role in Alzheimer's disease (AD) risk.
- DBP shows potential as a therapeutic agent for AD treatment.
- The findings clarify that DBP, rather than 25OHD levels directly, may mediate the association between vitamin D and AD.
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