PLIN5 deletion remodels intracellular lipid composition and causes insulin resistance in muscle


Autoria(s): Mason,RR; Mokhtar,R; Matzaris,M; Selathurai,A; Kowalski,GM; Mokbel,N; Meikle,PJ; Bruce,CR; Watt,MJ
Data(s)

01/09/2014

Resumo

Defective control of lipid metabolism leading to lipotoxicity causes insulin resistance in skeletal muscle, a major factor leading to diabetes. Here, we demonstrate that perilipin (PLIN) 5 is required to couple intramyocellular triacylglycerol lipolysis with the metabolic demand for fatty acids. PLIN5 ablation depleted triacylglycerol stores but increased sphingolipids including ceramide, hydroxylceramides and sphingomyelin. We generated perilipin 5 (Plin5)-/- mice to determine the functional significance of PLIN5 in metabolic control and insulin action. Loss of PLIN5 had no effect on body weight, feeding or adiposity but increased whole-body carbohydrate oxidation. Plin5-/- mice developed skeletal muscle insulin resistance, which was associated with ceramide accumulation. Liver insulin sensitivity was improved in Plin5-/- mice, indicating tissue-specific effects of PLIN5 on insulin action. We conclude that PLIN5 plays a critical role in coordinating skeletal muscle triacylglycerol metabolism, which impacts sphingolipid metabolism, and is requisite for the maintenance of skeletal muscle insulin action. © 2014 The Authors.

Identificador

http://hdl.handle.net/10536/DRO/DU:30071514

Idioma(s)

eng

Publicador

Elsevier BV

Relação

http://dro.deakin.edu.au/eserv/DU:30071514/kowalski-plin5deletionremodels-2014.pdf

http://dx.doi.org/10.1016/j.molmet.2014.06.002

Direitos

2014, Elsevier

Palavras-Chave #lipid metabolism #perilipin #lipid droplet #insulin resistance #skeletal muscle
Tipo

Journal Article