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CGI-58/ABHD5 coactivates adipose triglyceride lipase (ATGL). In adipocytes, CGI-58 binds to perilipin 1A on lipid droplets under basal conditions, preventing interaction with ATGL. Upon activation of protein kinase A (PKA), perilipin 1A is phosphorylated and CGI-58 rapidly disperses into the cytoplasm, enabling lipase coactivation. Because the amino acid sequence of murine CGI-58 has a predicted PKA consensus sequence of RKYS(239)S(240), we hypothesized that phosphorylation of CGI-58 is involved in this process. We show that Ser239 of murine CGI-58 is a substrate for PKA using phosphoamino acid analysis, MS, and immuno-blotting approaches to study phosphorylation of recombinant CGI-58 and endogenous CGI-58 of adipose tissue. Phosphorylation of CGI-58 neither increased nor impaired coactivation of ATGL in vitro. Moreover, Ser239 was not required for CGI-58 function to increase triacylglycerol turnover in human neutral lipid storage disorder fibroblasts that lack endogenous CGI-58. Both CGI-58 and S239A/S240A-mutated CGI-58 localized to perilipin 1A-coated lipid droplets in cells. When PKA was activated, WT CGI-58 dispersed into the cytoplasm, whereas substantial S239A/S240A-mutated CGI-58 remained on lipid droplets. Perilipin phosphorylation also contributed to CGI-58 dispersion. PKA-mediated phosphorylation of CGI-58 is required for dispersion of CGI-58 from perilipin 1A-coated lipid droplets, thereby increasing CGI-58 availability for ATGL coactivation.
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http://dx.doi.org/10.1194/jlr.M055004 | DOI Listing |
Front Bioeng Biotechnol
June 2025
Division of Endocrinology, Diabetes and Nutrition, Department of Medicine, University of Maryland School of Medicine, Baltimore, MD, United States.
Introduction: Metabolic dysfunction-associated steatotic liver disease (MASLD) and its progressive stage metabolic dysfunction-associated steatohepatitis (MASH) represent a leading cause of liver-related morbidity and mortality in the U.S. and worldwide.
View Article and Find Full Text PDFOrphanet J Rare Dis
April 2025
Department of Molecular Genetics, Weizmann Institute of Science, Rehovot, 7610001, Israel.
Background: Chanarin-Dorfman syndrome (CDS) is a multisystemic autosomal recessive rare disorder. CDS is caused by variants in the abhydrolase domain containing 5 (ABHD5) encoding gene (CGI-58), which ultimately leads to excessive lipid storage, and therefore a high abundance of cellular lipid droplets (LDs). Although the molecular etiology of the disease was described many years ago, no treatment for CDS is currently available.
View Article and Find Full Text PDFBMC Gastroenterol
April 2025
Department of Biochemistry, Faculty of Medicine, Iran University of Medical Sciences, Tehran, Iran.
Introduction: The higher prevalence of non-alcoholic fatty liver disease (NAFLD) in men than women before menopause and the reduced difference post-menopause suggest that sex hormones may influence liver lipid accumulation. This study compared the effects of sex hormones on lipid droplet (LD) accumulation in palmitate/ oleate-treated HepG2 cells.
Methods: The MTT method was used to determine effective doses of palmitic and oleic acids in HepG2 cells, followed by a combined dose for inducing LD formation.
Adv Lab Med
March 2025
Servicio de Análisis Clínicos, Hospital Universitari Sant Joan de Reus, Reus, Spain.
Objectives: Chanarin-Dorfman syndrome is a rare disease inherited in an autosomal recessive pattern whose prevalence does not exceed 130 cases worldwide.
Case Presentation: A 4-year-old patient with generalized erythematous-desquamative ichthyosiform syndrome since birth. The main laboratory finding was persistent hypertransaminasemia.
Biochem Biophys Rep
June 2025
IPICYT, Instituto Potosino de Investigación Científica y Tecnológica A.C., División de Biología Molecular, S.L.P, 78216, San Luis Potosí, Mexico.
Lipid droplets (LDs) serve as crucial organelles for lipid storage and metabolism, with their proteome significantly influencing their regulation. Perilipins (PLINs), in particular PLIN1, play vital role in LD metabolism by orchestrating lipolysis. The C-terminal end of PLIN1 regulates lipolysis through interactions with coactivators such as the CGI-58 protein.
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