Genetic insights into the association of statin and newer nonstatin drug target genes with human longevity: a Mendelian randomization analysis

孟德尔随机化 生物 全基因组关联研究 长寿 遗传学 表达数量性状基因座 遗传关联 单核苷酸多态性 多效性 生物信息学 基因 基因型 表型 遗传变异
作者
Han Chen,Xiaoying Zhou,Jingwen Hu,Shuo Li,Wenjie Zi,Tongyu Zhu,Hong Cheng,Guoxin Zhang
出处
期刊:Lipids in Health and Disease [Springer Nature]
卷期号:22 (1)
标识
DOI:10.1186/s12944-023-01983-0
摘要

Abstract Background It remains controversial whether the long-term use of statins or newer nonstatin drugs has a positive effect on human longevity. Therefore, this study aimed to investigate the genetic associations between different lipid-lowering therapeutic gene targets and human longevity. Methods Two-sample Mendelian randomization analyses were conducted. The exposures comprised genetic variants that proxy nine drug target genes mimicking lipid-lowering effects (LDLR, HMGCR, PCKS9, NPC1L1, APOB, CETP, LPL, APOC3, and ANGPTL3 ). Two large-scale genome-wide association study (GWAS) summary datasets of human lifespan, including up to 500,193 European individuals, were used as outcomes. The inverse-variance weighting method was applied as the main approach. Sensitivity tests were conducted to evaluate the robustness, heterogeneity, and pleiotropy of the results. Causal effects were further validated using expression quantitative trait locus (eQTL) data. Results Genetically proxied LDLR variants, which mimic the effects of lowering low-density lipoprotein cholesterol (LDL-C), were associated with extended lifespan. This association was replicated in the validation set and was further confirmed in the eQTL summary data of blood and liver tissues. Mediation analysis revealed that the genetic mimicry of LDLR enhancement extended lifespan by reducing the risk of major coronary heart disease, accounting for 22.8% of the mediation effect. The genetically proxied CETP and APOC3 inhibitions also showed causal effects on increased life expectancy in both outcome datasets. The lipid-lowering variants of HMGCR, PCKS9, LPL, and APOB were associated with longer lifespans but did not causally increase extreme longevity. No statistical evidence was detected to support an association between NPC1L1 and lifespan. Conclusion This study suggests that LDLR is a promising genetic target for human longevity. Lipid-related gene targets, such as PCSK9, CETP , and APOC 3, might potentially regulate human lifespan, thus offering promising prospects for developing newer nonstatin therapies.
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