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The Secreted Enzyme PM20D1 Regulates Lipidated Amino Acid Uncouplers of Mitochondria.

Citation
Long, J. Z., et al. “The Secreted Enzyme Pm20D1 Regulates Lipidated Amino Acid Uncouplers Of Mitochondria.”. Cell, pp. 424-435.
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Author Jonathan Z Long, Katrin J Svensson, Leslie A Bateman, Hua Lin, Theodore Kamenecka, Isha A Lokurkar, Jesse Lou, Rajesh R Rao, Mi Ra Chang, Mark P Jedrychowski, Joao A Paulo, Steven P Gygi, Patrick R Griffin, Daniel K Nomura, Bruce M Spiegelman
Abstract

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.

Year of Publication
2016
Journal
Cell
Volume
166
Issue
2
Number of Pages
424-435
Date Published
07/2016
ISSN Number
1097-4172
DOI
10.1016/j.cell.2016.05.071
Alternate Journal
Cell
PMID
27374330
PMCID
PMC4947008
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