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1.
Physiol Rep ; 8(3): e14373, 2020 02.
Artigo em Inglês | MEDLINE | ID: mdl-32073221

RESUMO

AIM: Since GH stimulates lipolysis in vivo after a 2-hr lag phase, we studied whether this involves GH signaling and gene expression in adipose tissue (AT). METHODS: Human subjects (n = 9) each underwent intravenous exposure to GH versus saline with measurement of serum FFA, and GH signaling, gene array, and protein in AT biopsies after 30-120 min. Human data were corroborated in adipose-specific GH receptor knockout (FaGHRKO) mice versus wild-type mice. Expression of candidate genes identified in the array were investigated in 3T3-L1 adipocytes. RESULTS: GH increased serum FFA and AT phosphorylation of STAT5b in human subjects. This was replicated in wild-type mice, but not in FaGHRKO mice. The array identified 53 GH-regulated genes, and Ingenuity Pathway analysis showed downregulation of PDE3b, an insulin-dependent antilipolytic signal, upregulation of PTEN that inhibits insulin-dependent antilipolysis, and downregulation of G0S2 and RASD1, both encoding antilipolytic proteins. This was confirmed in 3T3-L1 adipocytes, except for PDE3B, including reciprocal effects of GH and insulin on mRNA expression of PTEN, RASD1, and G0S2. CONCLUSION: (a) GH directly stimulates AT lipolysis in a GHR-dependent manner, (b) this involves suppression of antilipolytic signals at the level of gene expression, (c) the underlying GH signaling pathways remain to be defined.


Assuntos
Tecido Adiposo/metabolismo , Hormônio do Crescimento Humano/metabolismo , Lipólise , Células 3T3 , Tecido Adiposo/efeitos dos fármacos , Adulto , Animais , Nucleotídeo Cíclico Fosfodiesterase do Tipo 3/metabolismo , Ácidos Graxos não Esterificados/sangue , Feminino , Hormônio do Crescimento Humano/farmacologia , Humanos , Insulina/sangue , Masculino , Camundongos , Pessoa de Meia-Idade , PTEN Fosfo-Hidrolase/metabolismo , Receptores da Somatotropina/genética , Receptores da Somatotropina/metabolismo , Fator de Transcrição STAT5/metabolismo , Proteínas ras/metabolismo
2.
Physiol Rep ; 7(21): e14285, 2019 11.
Artigo em Inglês | MEDLINE | ID: mdl-31724339

RESUMO

Fasting in human subjects shifts skeletal muscle metabolism toward lipid utilization and accumulation, including intramyocellular lipid (IMCL) deposition. Growth hormone (GH) secretion amplifies during fasting and promotes lipolysis and lipid oxidation, but it is unknown to which degree lipid deposition and metabolism in skeletal muscle during fasting depends on GH action. To test this, we studied nine obese but otherwise healthy men thrice: (a) in the postabsorptive state ("CTRL"), (b) during 72-hr fasting ("FAST"), and (c) during 72-hr fasting and treatment with a GH antagonist (GHA) ("FAST + GHA"). IMCL was assessed by magnetic resonance spectroscopy (MRS) and blood samples were drawn for plasma metabolomics assessment while muscle biopsies were obtained for measurements of regulators of substrate metabolism. Prolonged fasting was associated with elevated GH levels and a pronounced GHA-independent increase in circulating medium- and long-chain fatty acids, glycerol, and ketone bodies indicating increased supply of lipid intermediates to skeletal muscle. Additionally, fasting was associated with a release of short-, medium-, and long-chain acylcarnitines to the circulation from an increased ß-oxidation. This was consistent with a ≈55%-60% decrease in pyruvate dehydrogenase (PDHa) activity. Opposite, IMCL content increased ≈75% with prolonged fasting without an effect of GHA. We suggest that prolonged fasting increases lipid uptake in skeletal muscle and saturates lipid oxidation, both favoring IMCL deposition. This occurs without a detectable effect of GHA on skeletal muscle lipid metabolism.


Assuntos
Jejum/metabolismo , Metabolismo dos Lipídeos/fisiologia , Músculo Esquelético/metabolismo , Obesidade/metabolismo , Glucose/metabolismo , Hormônio do Crescimento Humano/metabolismo , Humanos , Espectroscopia de Ressonância Magnética , Masculino , Metaboloma , Proteínas Mitocondriais/metabolismo , Oxirredução , Receptores Ativados por Proliferador de Peroxissomo/metabolismo
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