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Excessive folate synthesis limits lifespan in the C. elegans: E. coli aging model

机译:叶酸合成过多限制了秀丽隐杆线虫的寿命:大肠杆菌衰老模型

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Background Gut microbes influence animal health and thus, are potential targets for interventions that slow aging. Live E. coli provides the nematode worm Caenorhabditis elegans with vital micronutrients, such as folates that cannot be synthesized by animals. However, the microbe also limits C. elegans lifespan. Understanding these interactions may shed light on how intestinal microbes influence mammalian aging. Results Serendipitously, we isolated an E. coli mutant that slows C. elegans aging. We identified the disrupted gene to be aroD , which is required to synthesize aromatic compounds in the microbe. Adding back aromatic compounds to the media revealed that the increased C. elegans lifespan was caused by decreased availability of para-aminobenzoic acid, a precursor to folate. Consistent with this result, inhibition of folate synthesis by sulfamethoxazole, a sulfonamide, led to a dose-dependent increase in C. elegans lifespan. As expected, these treatments caused a decrease in bacterial and worm folate levels, as measured by mass spectrometry of intact folates. The folate cycle is essential for cellular biosynthesis. However, bacterial proliferation and C. elegans growth and reproduction were unaffected under the conditions that increased lifespan. Conclusions In this animal:microbe system, folates are in excess of that required for biosynthesis. This study suggests that microbial folate synthesis is a pharmacologically accessible target to slow animal aging without detrimental effects.
机译:背景肠道微生物会影响动物健康,因此是减缓衰老的干预措施的潜在目标。活的大肠杆菌为线虫蠕虫秀丽隐杆线虫提供了重要的微量营养素,例如动物无法合成的叶酸。但是,微生物也限制了秀丽隐杆线虫的寿命。了解这些相互作用可能会揭示肠道微生物如何影响哺乳动物的衰老。结果偶然地,我们分离了一个可延缓线虫衰老的大肠杆菌突变体。我们确定了被破坏的基因为aroD,这是在微生物中合成芳香化合物所必需的。向介质中添加芳香族化合物表明,秀丽隐杆线虫寿命的延长是由对氨基苯甲酸(叶酸的前体)的可用性降低所致。与此结果一致,磺胺甲恶唑(一种磺酰胺)对叶酸合成的抑制导致线虫寿命的剂量依赖性增加。如预期的那样,如通过完整叶酸的质谱法所测量的,这些处理导致细菌和蠕虫叶酸水平的降低。叶酸循环对于细胞生物合成至关重要。但是,在增加寿命的条件下,细菌增殖和秀丽隐杆线虫的生长和繁殖不受影响。结论在这种动物:微生物系统中,叶酸超过了生物合成所需的叶酸。这项研究表明,微生物叶酸的合成是药理学上可及的目标,可减缓动物衰老而无有害作用。

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