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A FRET sensor for the real-time detection of long chain acyl-CoAs and synthetic ABHD5 ligands.
Mottillo, Emilio P; Mladenovic-Lucas, Ljiljana; Zhang, Huamei; Zhou, Li; Kelly, Christopher V; Ortiz, Pablo A; Granneman, James G.
Affiliation
  • Mottillo EP; Hypertension and Vascular Research Division, Department of Internal Medicine, Henry Ford Hospital, 6135 Woodward Avenue, Detroit, MI 48202, USA.
  • Mladenovic-Lucas L; Department of Physiology, Wayne State University School of Medicine, Detroit, MI, USA.
  • Zhang H; Center for Molecular Medicine and Genetics, Wayne State University School of Medicine, Detroit, MI 48202, USA.
  • Zhou L; Center for Molecular Medicine and Genetics, Wayne State University School of Medicine, Detroit, MI 48202, USA.
  • Kelly CV; Center for Molecular Medicine and Genetics, Wayne State University School of Medicine, Detroit, MI 48202, USA.
  • Ortiz PA; Department of Physics and Astronomy, Wayne State University, Detroit, MI 48202, USA.
  • Granneman JG; Hypertension and Vascular Research Division, Department of Internal Medicine, Henry Ford Hospital, 6135 Woodward Avenue, Detroit, MI 48202, USA.
Cell Rep Methods ; 3(2): 100394, 2023 02 27.
Article in En | MEDLINE | ID: mdl-36936069
ABSTRACT
Intracellular long-chain acyl-coenzyme As (LC-acyl-CoAs) are thought to be under tight spatial and temporal controls, yet the ability to image LC-acyl-CoAs in live cells is lacking. Here, we developed a fluorescence resonance energy transfer (FRET) sensor for LC-acyl-CoAs based on the allosterically regulated interaction between α/ß hydrolase domain-containing 5 (ABHD5) and Perilipin 5. The genetically encoded sensor rapidly detects intracellular LC-acyl-CoAs generated from exogenous and endogenous fatty acids (FAs), as well as synthetic ABHD5 ligands. Stimulation of lipolysis in brown adipocytes elevated intracellular LC-acyl-CoAs in a cyclic fashion, which was eliminated by inhibiting PNPLA2 (ATGL), the major triglyceride lipase. Interestingly, inhibition of LC-acyl-CoA transport into mitochondria elevated intracellular LC-acyl-CoAs and dampened their cycling. Together, these observations reveal an intimate feedback control between LC-acyl-CoA generation from lipolysis and utilization in mitochondria. We anticipate that this sensor will be an important tool to dissect intracellular LC-acyl-CoA dynamics as well to discover novel synthetic ABHD5 ligands.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Acyl Coenzyme A / Fluorescence Resonance Energy Transfer Type of study: Diagnostic_studies Language: En Journal: Cell Rep Methods Year: 2023 Document type: Article Affiliation country: United States

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Acyl Coenzyme A / Fluorescence Resonance Energy Transfer Type of study: Diagnostic_studies Language: En Journal: Cell Rep Methods Year: 2023 Document type: Article Affiliation country: United States