Department of Genetics, the Silberman Institute, the Hebrew University of Jerusalem, Givat Ram, Jerusalem 91904, Israel.
Central Fish Health Laboratory, Department of Fisheries and Aquaculture, Ministry of Agriculture and Rural Development, Nir David 10803, Israel.
Dev Cell. 2023 Aug 7;58(15):1350-1364.e10. doi: 10.1016/j.devcel.2023.05.015. Epub 2023 Jun 14.
During aging, the loss of metabolic homeostasis drives a myriad of pathologies. A central regulator of cellular energy, the AMP-activated protein kinase (AMPK), orchestrates organismal metabolism. However, direct genetic manipulations of the AMPK complex in mice have, so far, produced detrimental phenotypes. Here, as an alternative approach, we alter energy homeostasis by manipulating the upstream nucleotide pool. Using the turquoise killifish, we mutate APRT, a key enzyme in AMP biosynthesis, and extend the lifespan of heterozygous males. Next, we apply an integrated omics approach to show that metabolic functions are rejuvenated in old mutants, which also display a fasting-like metabolic profile and resistance to high-fat diet. At the cellular level, heterozygous cells exhibit enhanced nutrient sensitivity, reduced ATP levels, and AMPK activation. Finally, lifelong intermittent fasting abolishes the longevity benefits. Our findings suggest that perturbing AMP biosynthesis may modulate vertebrate lifespan and propose APRT as a promising target for promoting metabolic health.
在衰老过程中,代谢稳态的丧失会导致多种病理。细胞能量的中央调节因子,即 AMP 激活的蛋白激酶(AMPK),协调着机体的新陈代谢。然而,迄今为止,对小鼠 AMPK 复合物的直接基因操作产生了有害的表型。在这里,作为一种替代方法,我们通过操纵上游核苷酸池来改变能量稳态。我们利用绿松石色的食蚊鱼,突变了 AMP 生物合成的关键酶 APRT,并延长了杂合雄性个体的寿命。接下来,我们应用综合组学方法表明,代谢功能在年老的突变体中得到了恢复,它们还表现出类似于禁食的代谢特征和对高脂肪饮食的抵抗力。在细胞水平上,杂合细胞表现出增强的营养敏感性、降低的 ATP 水平和 AMPK 激活。最后,终身间歇性禁食会消除长寿的益处。我们的发现表明,干扰 AMP 生物合成可能会调节脊椎动物的寿命,并提出 APRT 是促进代谢健康的有前途的靶点。