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肠道微生物群与数百种衰老相关特征之间的因果关系:对载脂蛋白M蛋白水平产生可复制影响的证据。

Causal relationships between gut microbiome and hundreds of age-related traits: evidence of a replicable effect on ApoM protein levels.

作者信息

Grosso Federica, Zanetti Daniela, Sanna Serena

机构信息

Institute for Genetic and Biomedical Research (IRGB) of the National Research Council (CNR), Monserrato (CA), Italy.

出版信息

Aging (Albany NY). 2025 Aug 1;17(8):1966-1987. doi: 10.18632/aging.206293.

Abstract

In the past 20 years, the involvement of gut microbiome in human health has received particular attention, but its contribution to age-related diseases remains unclear. To address this, we performed a comprehensive two-sample Mendelian Randomization investigation, testing 55130 potential causal relationships between 37 traits representing gut microbiome composition and function and age-related phenotypes, including 1472 inflammatory and cardiometabolic circulating plasma proteins from UK Biobank Pharma Proteomic Project and 18 complex traits. A total of 91 causal relationships remained significant after multiple testing correction (false discovery rate -value <0.05) and sensitivity analyses, notably two with the risk of developing age-related macular degeneration and 89 with plasma proteins. The link between purine nucleotides degradation II aerobic pathway and apolipoprotein M was further replicated using independent genome-wide association study data. Finally, by taking advantage of previously reported biological function of we found evidence of regulation of six proteins by its function as mucosal-A antigen utilization. These results support the role of gut microbiome as modulator of the inflammatory and cardiometabolic circuits, that may contribute to the onset of age-related diseases, albeit future studies are needed to investigate the underlying biological mechanisms.

摘要

在过去20年里,肠道微生物群在人类健康中的作用受到了特别关注,但其对与年龄相关疾病的贡献仍不清楚。为了解决这个问题,我们进行了一项全面的两样本孟德尔随机化研究,测试了代表肠道微生物群组成和功能的37个性状与包括来自英国生物银行药物蛋白质组计划的1472种炎症和心脏代谢循环血浆蛋白以及18种复杂性状在内的与年龄相关表型之间的55130种潜在因果关系。经过多重检验校正(错误发现率值<0.05)和敏感性分析后,共有91种因果关系仍然显著,其中值得注意的是,两种与年龄相关性黄斑变性的发病风险有关,89种与血浆蛋白有关。使用独立的全基因组关联研究数据进一步验证了嘌呤核苷酸降解II需氧途径与载脂蛋白M之间的联系。最后,通过利用先前报道的生物学功能,我们发现了其作为粘膜A抗原利用功能对六种蛋白质进行调节的证据。这些结果支持肠道微生物群作为炎症和心脏代谢回路调节剂的作用,这可能导致与年龄相关疾病的发生,尽管未来还需要研究潜在的生物学机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7265/12422825/07f531493e7b/aging-17-8-206293-g001.jpg

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