Wu Ping, Vandemeulebroucke Lieselot, Cai Huaihan, Braeckman Bart P
Laboratory of Aging Physiology and Molecular Evolution, Department of Biology, Ghent University, Ghent, Belgium.
Overseas Pharmaceuticals, Ltd., Huangpu District, Guangzhou, China.
Aging Cell. 2025 Jul;24(7):e70058. doi: 10.1111/acel.70058. Epub 2025 Apr 8.
Dietary restriction (DR) is a well-established method for extending lifespan across various species, including C. elegans. Among the different DR regimens, axenic dietary restriction (ADR), in which worms are grown in a nutrient-rich sterile liquid medium, yields the most powerful lifespan extension. However, the molecular mechanisms underlying this longevity phenotype remain largely unexplored. Through a pilot screen of candidate genes, we identified the proprotein convertase BLI-4 as a crucial factor in neurons for modulating lifespan under ADR conditions. BLI-4's role appears to be specific to ADR, as it does not significantly impact longevity under other DR regimens. We further explored the involvement of different bli-4 isoforms and found that isoforms b, f, i and j redundantly contribute to the ADR-mediated lifespan extension, while the bli-4d isoform is mainly involved in development. Proteomics analysis revealed that the loss of BLI-4 function under ADR conditions specifically downregulates GOLG-2, involved in Golgi complex organization. This gene also partially mediates the longevity effects of BLI-4 under ADR conditions. Our findings highlight the importance of neuronal BLI-4 and its downstream targets in regulating lifespan extension induced by ADR in C. elegans.
饮食限制(DR)是一种在包括秀丽隐杆线虫在内的各种物种中延长寿命的成熟方法。在不同的饮食限制方案中,无菌饮食限制(ADR),即让线虫在营养丰富的无菌液体培养基中生长,能产生最显著的寿命延长效果。然而,这种长寿表型背后的分子机制在很大程度上仍未被探索。通过对候选基因的初步筛选,我们确定前蛋白转化酶BLI-4是在ADR条件下调节寿命的神经元中的关键因素。BLI-4的作用似乎特定于ADR,因为在其他饮食限制方案下它对寿命没有显著影响。我们进一步探究了不同的bli-4异构体的参与情况,发现异构体b、f、i和j对ADR介导的寿命延长有冗余贡献,而bli-4d异构体主要参与发育过程。蛋白质组学分析表明,在ADR条件下BLI-4功能的丧失会特异性地下调参与高尔基体复合体组织的GOLG-2。该基因在ADR条件下也部分介导了BLI-4的长寿效应。我们的研究结果突出了神经元BLI-4及其下游靶点在调节秀丽隐杆线虫中ADR诱导的寿命延长方面的重要性。