4.8 Article

The Secreted Enzyme PM20D1 Regulates Lipidated Amino Acid Uncouplers of Mitochondria

Journal

CELL
Volume 166, Issue 2, Pages 424-435

Publisher

CELL PRESS
DOI: 10.1016/j.cell.2016.05.071

Keywords

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Funding

  1. NIH [DK105203, DK098285, R01CA172667, DK5447, DK31405]
  2. Swedish Research Council [PE2013/613]
  3. American Cancer Society [RSG14-242-01-TBE]
  4. JPB Foundation

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Brown and beige adipocytes are specialized cells that express uncoupling protein 1 ( UCP1) and dissipate chemical energy as heat. These cells likely possess alternative UCP1-independent thermogenic mechanisms. Here, we identify a secreted enzyme, peptidase M20 domain containing 1 ( PM20D1), that is enriched in UCP1(+) versus UCP1(-) adipocytes. We demonstrate that PM20D1 is a bidirectional enzyme in vitro, catalyzing both the condensation of fatty acids and amino acids to generate N-acyl amino acids and also the reverse hydrolytic reaction. N-acyl amino acids directly bind mitochondria and function as endogenous uncouplers of UCP1-independent respiration. Mice with increased circulating PM20D1 have augmented respiration and increased N-acyl amino acids in blood. Lastly, administration of N-acyl amino acids to mice improves glucose homeostasis and increases energy expenditure. These data identify an enzymatic node and a family of metabolites that regulate energy homeostasis. This pathway might be useful for treating obesity and associated disorders.

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