Altres ajuts: MSPS/PI03/0528
This work investigates the metabolic origin of triacylglycerol (TAG) formed during lipid droplet (LD) biogenesis induced by stress. Cytotoxic inhibitors of fatty acid synthase induced TAG synthesis and LD biogenesis in CHO-K1 cells, in the absence of external sources of fatty acids. TAG synthesis was required for LD biogenesis and was sensitive to inhibition and down-regulation of the expression of group VIA phospholipase A2 (iPLA2-VIA). Induction of stress with acidic pH, C2-ceramide, tunicamycin, or deprivation of glucose also stimulated TAG synthesis and LD formation in a manner dependent on iPLA2-VIA. Overexpression of the enzyme enhanced TAG synthesis from endogenous fatty acids and LD occurrence. During stress, LD biogenesis but not TAG synthesis required phosphorylation and activation of group IVA PLA2 (cPLA2α). The results demonstrate that iPLA2-VIA provides fatty acids for TAG synthesis while cPLA2α allows LD biogenesis. LD biogenesis during stress may be a survival strategy, recycling structural phospholipids into energy-generating substrates.
English
Acidic pH; Ceramide; Cytotoxic; Down-regulation; External sources; Fatty acid synthase; Lipid droplets; Over-expression; Phospholipase A; Triacylglycerol; Tunicamycin
Ministerio de Educación y Ciencia SAF2004/01698
Ministerio de Educación y Ciencia SAF2007/60055
Ministerio de Educación y Ciencia BFU2007/67154/BMC
Journal of biological chemistry ; Vol. 284, Num. 9 (2009), p. 5697-56708
open access
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