Polyunsaturated fatty acid desaturation is a mechanism for glycolytic NAD+ recycling

  • Kim, Wondong
  • Deik, Amy
  • Gonzalez, Clicerio
  • Gonzalez, Maria Elena
  • Fu, Feifei
  • 외 6명
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117
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117

초록

The reactions catalyzed by the delta-5 and delta-6 desaturases (D5D/D6D), key enzymes responsible for highly unsaturated fatty acid (HUFA) synthesis, regenerate NAD + from NADH. Here, we show that D5D/D6D provide a mechanism for glycolytic NAD + recycling that permits ongoing glycolysis and cell viability when the cytosolic NAD + /NADH ratio is reduced, analogous to lactate fermentation. Although lesser in magnitude than lactate production, this desaturase-mediated NAD + recycling is acutely adaptive when aerobic respiration is impaired in vivo. Notably, inhibition of either HUFA synthesis or lactate fermentation increases the other, underscoring their interdependence. Consistent with this, a type 2 diabetes risk haplotype in SLC16A11 that reduces pyruvate transport (thus limiting lactate production) increases D5D/D6D activity in vitro and in humans, demonstrating a chronic effect of desaturase-mediated NAD + recycling. These findings highlight key biologic roles for D5D/D6D activity independent of their HUFA end products and expand the current paradigm of glycolytic NAD + regeneration. Kim et al. find that highly unsaturated fatty acid (HUFA) synthesis is a mechanism for glycolytic NAD + recycling, analogous to lactate fermentation. This finding highlights a key biologic role for lipid desaturation independent of HUFA end products and provides insight into genetic studies linking HUFA desaturation with human disease. © 2018 Elsevier Inc.

키워드

delta-5-desaturasedelta-6-desaturaseFADS1-3highly unsaturated fatty acidsNAD + recyclingpolyunsaturated fatty acidsSLC16A11GENOME-WIDE ASSOCIATIONALPHA-LINOLENIC ACIDLACTATEMETABOLISMDELTA-5LOCIIDENTIFICATIONBIOSYNTHESISEXPRESSIONCLONING
제목
Polyunsaturated fatty acid desaturation is a mechanism for glycolytic NAD+ recycling
저자
Kim, WondongDeik, AmyGonzalez, ClicerioGonzalez, Maria ElenaFu, FeifeiFerrari, MicheleChurchhouse, Claire L.Florez, Jose C.Jacobs, Suzanne B.R.Clish, Clary B.Rhee, Eugene P.
DOI
10.1016/j.cmet.2018.12.023
발행일
2019-04
유형
정기학술지(Article(Perspective Article포함))
저널명
Cell Metabolism
페이지
856 ~ 870