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1.
Int J Cancer ; 145(4): 901-915, 2019 08 15.
Article in English | MEDLINE | ID: mdl-30653260

ABSTRACT

Endothelial lipase (LIPG) is a cell surface associated lipase that displays phospholipase A1 activity towards phosphatidylcholine present in high-density lipoproteins (HDL). LIPG was recently reported to be expressed in breast cancer and to support proliferation, tumourigenicity and metastasis. Here we show that severe oxidative stress leading to AMPK activation triggers LIPG upregulation, resulting in intracellular lipid droplet accumulation in breast cancer cells, which supports survival. Neutralizing oxidative stress abrogated LIPG upregulation and the concomitant lipid storage. In human breast cancer, high LIPG expression was observed in a limited subset of tumours and was significantly associated with shorter metastasis-free survival in node-negative, untreated patients. Moreover, expression of PLIN2 and TXNRD1 in these tumours indicated a link to lipid storage and oxidative stress. Altogether, our findings reveal a previously unrecognized role for LIPG in enabling oxidative stress-induced lipid droplet accumulation in tumour cells that protects against oxidative stress, and thus supports tumour progression.


Subject(s)
Breast Neoplasms/metabolism , Breast Neoplasms/pathology , Lipase/metabolism , Lipids/physiology , Oxidative Stress/physiology , Cell Line, Tumor , Disease Progression , Disease-Free Survival , Female , Humans , Lipid Metabolism/physiology , Lipoproteins, HDL/metabolism , MCF-7 Cells , Middle Aged , Up-Regulation/physiology
2.
Biochim Biophys Acta ; 1821(9): 1256-68, 2012 Sep.
Article in English | MEDLINE | ID: mdl-22178194

ABSTRACT

Alterations in lipid metabolism and in the lipid composition of cellular membranes are linked to the pathology of numerous diseases including cancer. However, the influence of oncogene expression on cellular lipid profile is currently unknown. In this work we analyzed changes in lipid profiles that are induced in the course of ERBB2-expression mediated premature senescence. As a model system we used MCF-7 breast cancer cells with doxycycline-inducible expression of NeuT, an oncogenic ERBB2 variant. Affymetrix gene array data showed NeuT-induced alterations in the transcription of many enzymes involved in lipid metabolism, several of which (ACSL3, CHPT1, PLD1, LIPG, MGLL, LDL and NPC1) could be confirmed by quantitative realtime PCR. A study of the glycerophospholipid and lyso-glycerophospholipid profiles, obtained by high performance liquid chromatography coupled to Fourier-transform ion cyclotron resonance-mass spectrometry revealed senescence-associated changes in numerous lipid species, including mitochondrial lipids. The most prominent changes were found in PG(34:1), PG(36:1) (increased) and LPE(18:1), PG(40:7) and PI(36:1) (decreased). Statistical analysis revealed a general trend towards shortened phospholipid acyl chains in senescence and a significant trend to more saturated acyl chains in the class of phosphatidylglycerol. Additionally, the cellular cholesterol content was elevated and accumulated in vacuoles in senescent cells. These changes were accompanied by increased membrane fluidity. In mitochondria, loss of membrane potential along with altered intracellular distribution was observed. In conclusion, we present a comprehensive overview of altered cholesterol and glycerophospholipid patterns in senescence, showing that predominantly mitochondrial lipids are affected and lipid species less susceptible to peroxidation are increased.


Subject(s)
Breast Neoplasms/metabolism , Cellular Senescence , Genes, erbB-2 , Glycerophospholipids/metabolism , Lipid Metabolism , Receptor, ErbB-2/biosynthesis , Breast Neoplasms/genetics , Breast Neoplasms/pathology , Cell Line, Tumor , Female , Glycerophospholipids/genetics , Humans , Mitochondria/genetics , Mitochondria/metabolism , Mitochondria/pathology , Receptor, ErbB-2/genetics , Vacuoles/genetics , Vacuoles/metabolism , Vacuoles/pathology
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