Laboratory Genetic Metabolic Diseases, Amsterdam Gastroenterology and Metabolism, Amsterdam UMC, University of Amsterdam, Meibergdreef 9, Amsterdam, The Netherlands.
Bioinformatics Laboratory, Department of Clinical Epidemiology, Biostatistics and Bioinformatics, Amsterdam UMC, University of Amsterdam, Meibergdreef 9, AZ Amsterdam, the Netherlands.
PLoS Genet. 2019 Mar 7;15(3):e1007633. doi: 10.1371/journal.pgen.1007633. eCollection 2019 Mar.
The deregulation of metabolism is a hallmark of aging. As such, changes in the expression of metabolic genes and the profiles of amino acid levels are features associated with aging animals. We previously reported that the levels of most amino acids decline with age in Caenorhabditis elegans (C. elegans). Glycine, in contrast, substantially accumulates in aging C. elegans. In this study we show that this is coupled to a decrease in gene expression of enzymes important for glycine catabolism. We further show that supplementation of glycine significantly prolongs C. elegans lifespan, and early adulthood is important for its salutary effects. Moreover, supplementation of glycine ameliorates specific transcriptional changes that are associated with aging. Glycine feeds into the methionine cycle. We find that mutations in components of this cycle, methionine synthase (metr-1) and S-adenosylmethionine synthetase (sams-1), completely abrogate glycine-induced lifespan extension. Strikingly, the beneficial effects of glycine supplementation are conserved when we supplement with serine, which also feeds into the methionine cycle. RNA-sequencing reveals a similar transcriptional landscape in serine- and glycine-supplemented worms both demarked by widespread gene repression. Taken together, these data uncover a novel role of glycine in the deceleration of aging through its function in the methionine cycle.
代谢失调是衰老的一个标志。因此,代谢基因表达的变化和氨基酸水平的特征与衰老动物有关。我们之前报道过,在秀丽隐杆线虫(C. elegans)中,大多数氨基酸的水平随着年龄的增长而下降。相比之下,甘氨酸在衰老的 C. elegans 中大量积累。在这项研究中,我们表明这与对甘氨酸分解代谢至关重要的酶的基因表达下降有关。我们进一步表明,补充甘氨酸可显著延长 C. elegans 的寿命,而成年早期对其有益效果很重要。此外,补充甘氨酸可改善与衰老相关的特定转录变化。甘氨酸进入蛋氨酸循环。我们发现,该循环的组件(蛋氨酸合成酶(metr-1)和 S-腺苷甲硫氨酸合成酶(sams-1))中的突变完全消除了甘氨酸诱导的寿命延长。引人注目的是,当我们用丝氨酸补充时,补充甘氨酸的有益效果是保守的,丝氨酸也进入蛋氨酸循环。RNA-seq 揭示了补充丝氨酸和甘氨酸的蠕虫之间相似的转录图谱,两者都以广泛的基因抑制为标志。总之,这些数据揭示了甘氨酸通过其在蛋氨酸循环中的功能在减缓衰老中的新作用。