Regulation of skeletal muscle lipolysis and oxidative metabolism by the co-lipase CGI-58
about
Comparative gene identification-58/α/β hydrolase domain 5: more than just an adipose triglyceride lipase activator?Muscle Lipid Metabolism: Role of Lipid Droplets and PerilipinsCellular localization and associations of the major lipolytic proteins in human skeletal muscle at rest and during exercise.Characterization of lipolytic inhibitor G(0)/G(1) switch gene-2 protein (G0S2) expression in male Sprague-Dawley rat skeletal muscle compared to relative content of adipose triglyceride lipase (ATGL) and comparitive gene identification-58 (CGI-58)Muscle-specific deletion of comparative gene identification-58 (CGI-58) causes muscle steatosis but improves insulin sensitivity in male mice.Functional cardiac lipolysis in mice critically depends on comparative gene identification-58.G0/G1 Switch Gene 2 controls adipose triglyceride lipase activity and lipid metabolism in skeletal muscleSkeletal muscle triacylglycerol hydrolysis does not influence metabolic complications of obesity.Perilipin 5 fine-tunes lipid oxidation to metabolic demand and protects against lipotoxicity in skeletal muscle.Adipogenic progenitors from obese human skeletal muscle give rise to functional white adipocytes that contribute to insulin resistance.Loss of perilipin 2 in cultured myotubes enhances lipolysis and redirects the metabolic energy balance from glucose oxidation towards fatty acid oxidation.Novel Pharmacological Probes Reveal ABHD5 as a Locus of Lipolysis Control in White and Brown Adipocytes.Critical roles for α/β hydrolase domain 5 (ABHD5)/comparative gene identification-58 (CGI-58) at the lipid droplet interface and beyond.Natriuretic peptides promote glucose uptake in a cGMP-dependent manner in human adipocytes.Glucose metabolism and metabolic flexibility in cultured skeletal muscle cells is related to exercise status in young male subjects.PPARδ activation in human myotubes increases mitochondrial fatty acid oxidative capacity and reduces glucose utilization by a switch in substrate preference.
P2860
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P2860
Regulation of skeletal muscle lipolysis and oxidative metabolism by the co-lipase CGI-58
description
2012 թուականի Մայիսին հրատարակուած գիտական յօդուած
@hyw
2012 թվականի մայիսին հրատարակված գիտական հոդված
@hy
artículu científicu espublizáu en 2012
@ast
im Mai 2012 veröffentlichter wissenschaftlicher Artikel
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scientific journal article
@en
vedecký článok (publikovaný 2012/05/01)
@sk
vědecký článek publikovaný v roce 2012
@cs
wetenschappelijk artikel (gepubliceerd op 2012/05/01)
@nl
наукова стаття, опублікована в травні 2012
@uk
مقالة علمية (نشرت في مايو 2012)
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name
Regulation of skeletal muscle lipolysis and oxidative metabolism by the co-lipase CGI-58
@ast
Regulation of skeletal muscle lipolysis and oxidative metabolism by the co-lipase CGI-58
@en
Regulation of skeletal muscle lipolysis and oxidative metabolism by the co-lipase CGI-58
@nl
type
label
Regulation of skeletal muscle lipolysis and oxidative metabolism by the co-lipase CGI-58
@ast
Regulation of skeletal muscle lipolysis and oxidative metabolism by the co-lipase CGI-58
@en
Regulation of skeletal muscle lipolysis and oxidative metabolism by the co-lipase CGI-58
@nl
prefLabel
Regulation of skeletal muscle lipolysis and oxidative metabolism by the co-lipase CGI-58
@ast
Regulation of skeletal muscle lipolysis and oxidative metabolism by the co-lipase CGI-58
@en
Regulation of skeletal muscle lipolysis and oxidative metabolism by the co-lipase CGI-58
@nl
P2093
P2860
P50
P3181
P356
P1476
Regulation of skeletal muscle lipolysis and oxidative metabolism by the co-lipase CGI-58
@en
P2093
Aline Mairal
Arild C Rustan
Camille Loubière
Katie Louche
Pierre-Marie Badin
Steven R Smith
P2860
P304
P3181
P356
10.1194/JLR.M019182
P577
2012-02-29T00:00:00Z