NUDT2 and a proteome-wide causal map of plasma proteins in osteoporosis
Journal of Advanced Research, 2026
Wang Z., Chen S., Luo J., Liu Z., Wen J., Feng B., Ye W., Ma J., Chen Z., Li Z., Yang Z., Qiu J., Cui Z.
| Disease area | Application area | Sample type | Products |
|---|---|---|---|
Orthopedics | Pathophysiology | Plasma | Olink Explore 3072/384 |
Abstract
ntroduction
Pharmacological targets supported by genetic evidence demonstrate significantly higher success rates in clinical development. Osteoporosis (OP) represents a major global health burden; however, the causal plasma proteome underlying OP remains largely unexplored, limiting the discovery of effective circulating biomarkers and therapeutic agents.
Objectives
This study aimed to conduct a comprehensive proteome-wide analysis to construct a causal map of plasma proteins for OP and to identify high-confidence therapeutic targets with translational potential.
Methods
We performed a proteome-wide Mendelian randomization (PW-MR) analysis by integrating large-scale GWAS meta-analysis data (18,008 OP cases and 928,650 controls) with cis-acting protein quantitative trait loci (pQTLs) derived from the deCODE and UKB-PPP cohorts. To ensure robustness, we employed orthogonal validation approaches, including colocalization analyses, summary data-based Mendelian randomization (SMR), and single-cell transcriptomic mapping.
Results
We identified 144 plasma proteins causally associated with OP, encompassing two novel susceptibility loci (HOXC5 and HBQ1) and five previously unreported candidates (NUDT2, NUB1, TNFSF8, UNG, and MXRA8). Notably, single-cell mapping revealed that NUDT2 is specifically enriched in osteoprogenitor cells, distinct from other identified targets.
Conclusion
These findings delineate the first causal blueprint of the OP plasma proteome. NUDT2 is highlighted as a plausible metabolic regulator of bone formation. Collectively, this study provides a valuable resource for precision diagnostics and accelerates the development of novel therapeutics for osteoporosis.