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土壤分枝杆菌属通过秀丽隐杆线虫中不同的细菌衍生分子促进健康和长寿。

The soil Mycobacterium sp. promotes health and longevity through different bacteria-derived molecules in Caenorhabditis elegans.

作者信息

Liu Limeng, Hao Xusheng, Bai Yang, Tian Ye

机构信息

State Key Laboratory of Molecular Developmental Biology, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Beijing, China.

University of Chinese Academy of Sciences, Beijing, China.

出版信息

Aging Cell. 2025 Mar;24(3):e14416. doi: 10.1111/acel.14416. Epub 2024 Nov 19.

Abstract

Commensal bacteria and their derivatives hold significant promise as therapeutic interventions to delay aging. However, with the diverse nature of the soil microbiome and the long lifespan of mammalian models, the exploration of the influence of soil bacteria and bacteria-derived molecules on host aging remains limited. We conducted a lifespan screening in Caenorhabditis elegans using plant root bacterial collection. Our screening identified 8 genera of bacterial isolates capable of extending lifespan, with Mycobacterium sp. Root265 exhibits the most pronounced effect on lifespan extension. Biochemical analysis revealed two specific molecules derived from Root265, polysaccharides (PSs) and arabinogalactan peptidoglycan (AGP), responsible for lifespan extension via daf-16-dependent and -independent pathways, respectively. Notably, AGP exhibited a unique ability to enhance protein homeostasis effectively. Moreover, polar lipids originating from Root265 were found to extend lifespan while mitigating age-related BAS-1 decline in neurons. Intriguingly, even brief exposures to these bioactive compounds were sufficient to achieve the lifespan-promoting effects. We found diverse beneficial bacteria and anti-aging active compounds from soil bacteria. These findings highlight the potential of exploring bacterial derivatives as therapies targeting aging without the constraints associated with direct microbial interventions.

摘要

共生细菌及其衍生物作为延缓衰老的治疗手段具有巨大潜力。然而,由于土壤微生物群的多样性以及哺乳动物模型的长寿特性,关于土壤细菌及其衍生分子对宿主衰老影响的探索仍然有限。我们利用植物根际细菌集合在秀丽隐杆线虫中进行了寿命筛选。我们的筛选鉴定出8个能够延长寿命的细菌分离属,其中分枝杆菌属Root265对寿命延长的影响最为显著。生化分析揭示了Root265产生的两种特定分子,即多糖(PSs)和阿拉伯半乳聚糖肽聚糖(AGP),它们分别通过依赖和不依赖daf-16的途径延长寿命。值得注意的是,AGP具有独特的能力,能够有效地增强蛋白质稳态。此外,发现源自Root265的极性脂质可延长寿命,同时减轻神经元中与年龄相关的BAS-1下降。有趣的是,即使短暂接触这些生物活性化合物也足以实现促进寿命的效果。我们从土壤细菌中发现了多种有益细菌和抗衰老活性化合物。这些发现凸显了探索细菌衍生物作为针对衰老的疗法的潜力,而不受直接微生物干预相关限制的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f0a7/11896450/5cac8f2b86d0/ACEL-24-e14416-g006.jpg

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