Izrayelit Yevgeniy, Robinette Steven L, Bose Neelanjan, von Reuss Stephan H, Schroeder Frank C
Boyce Thompson Institute and Department of Chemistry and Chemical Biology, Cornell University, Ithaca, New York 14853, USA.
ACS Chem Biol. 2013 Feb 15;8(2):314-9. doi: 10.1021/cb3004644. Epub 2012 Nov 26.
Ascarosides are small-molecule signals that play a central role in C. elegans biology, including dauer formation, aging, and social behaviors, but many aspects of their biosynthesis remain unknown. Using automated 2D NMR-based comparative metabolomics, we identified ascaroside ethanolamides as shunt metabolites in C. elegans mutants of daf-22, a gene with homology to mammalian 3-ketoacyl-CoA thiolases predicted to function in conserved peroxisomal lipid β-oxidation. Two groups of ethanolamides feature β-keto functionalization confirming the predicted role of daf-22 in ascaroside biosynthesis, whereas α-methyl substitution points to unexpected inclusion of methylmalonate at a late stage in the biosynthesis of long-chain fatty acids in C. elegans. We show that ascaroside ethanolamide formation in response to defects in daf-22 and other peroxisomal genes is associated with severe depletion of endocannabinoid pools. These results indicate unexpected interaction between peroxisomal lipid β-oxidation and the biosynthesis of endocannabinoids, which are major regulators of lifespan in C. elegans. Our study demonstrates the utility of unbiased comparative metabolomics for investigating biochemical networks in metazoans.
ascarosides是小分子信号,在秀丽隐杆线虫生物学中发挥核心作用,包括滞育形成、衰老和社会行为,但它们生物合成的许多方面仍不清楚。利用基于二维核磁共振的自动化比较代谢组学,我们在daf-22的秀丽隐杆线虫突变体中鉴定出ascaroside乙醇酰胺为分流代谢物,daf-22是一个与哺乳动物3-酮酰基辅酶A硫解酶同源的基因,预计在保守的过氧化物酶体脂质β-氧化中发挥作用。两组乙醇酰胺具有β-酮官能化,证实了daf-22在ascaroside生物合成中的预测作用,而α-甲基取代表明秀丽隐杆线虫长链脂肪酸生物合成后期意外包含丙二酸单酰。我们表明,对daf-22和其他过氧化物酶体基因缺陷的反应中ascaroside乙醇酰胺的形成与内源性大麻素库的严重消耗有关。这些结果表明过氧化物酶体脂质β-氧化与内源性大麻素生物合成之间存在意外的相互作用,内源性大麻素是秀丽隐杆线虫寿命的主要调节因子。我们的研究证明了无偏比较代谢组学在研究后生动物生化网络中的实用性。