个性化文献订阅>期刊> ACS CHEMICAL BIOLOGY
 

2D NMR-Based Metabolomics Uncovers Interactions between Conserved Biochemical Pathways in the Model Organism Caenorhabditis elegans

  作者 IZRAYELIT YEVGENIY; ROBINETTE STEVEN L; BOSE NEELANJAN; VON REUSS STEPHAN H; SCHROEDER FRANK C  
  选自 期刊  ACS CHEMICAL BIOLOGY;  卷期  2013年8-2;  页码  314-319  
  关联知识点  
 

[摘要]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 beta-oxidation. Two groups of ethanolamides feature beta-keto functionalization confirming the predicted role of daf-22 in ascaroside biosynthesis, whereas alpha-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 beta-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.

 
      被申请数(0)  
 

[全文传递流程]

一般上传文献全文的时限在1个工作日内