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  • Fructose sensitizes Jurkat cells oxidative stress-induced apoptosis via caspase-dependent and caspase-independent mechanisms.

Fructose sensitizes Jurkat cells oxidative stress-induced apoptosis via caspase-dependent and caspase-independent mechanisms.

Cell biology international (2016-08-04)
Viviana Diaz-Aguirre, Carlos Velez-Pardo, Marlene Jimenez-Del-Rio
ABSTRACT

Whether fructose (FRU), as the sole energy source, confers a metabolic advantage on cancer cells against noxious stimuli is unknown. The aim of this study was to evaluate the effects of low (11 mM), moderate (25 mM), and high (55 mM) FRU concentrations alone or in combination with rotenone (ROT) or doxorubicin (DOX) in Jurkat cells, an acute lymphoblastic leukemia cell model. Glucose (GLU) was used as a control. Using different cell analysis techniques, we demonstrated that FRU was predominantly metabolized via oxidative phosphorylation (∼95%) (i.e., lactate production was reduced >120-fold), resulting in endogenous oxidative stress-induced conditions. The cells were characterized by generation of O2•- (43%)/ H2 O2 (40%) and activation of NF-κB (∼95-fold increase, fi), c-Jun-N terminal kinase (JNK), p53 (40-fi), and c-Jun (9-fi). In addition, we observed a loss of ΔΨm (10%), activation of caspase-3 (50-fi) and apoptosis-inducing factor (AIF, 2-fi), and condensation and fragmentation of the nuclei [20% by acridine orange/ethidium bromide/Hoechst (AO/EB/H) staining, 15% by flow cytometry] compared to those of GLU 11 at 24 h. Although DOX killed Jurkat cells independent of sugar content in the culture medium, leukemic cells in low, but not high, FRU were extremely sensitive to ROT. Taken together, our findings suggest that Jurkat cells are more susceptible to cell death if forced to shift from GLU metabolism (i.e., aerobic glycolysis) to FRU metabolism (i.e., oxidative phosphorylation) after treatment with mitochondria-targeting molecules. These observations may help elucidate the cell death mechanism of leukemic cells cultured in FRU.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
1-Pyrrolidinecarbodithioic Acid, Ammonium Salt, Cell permeable. Inhibits the induction of NOS activity in rat alveolar macrophages. Prevents apoptosis in human HL-60 cells and thymocytes, but induces apoptosis in human and rat smooth muscle cells.
Sigma-Aldrich
JNK Inhibitor II, JNK Inhibitor II. SP600125, CAS 129-56-6, is a potent, cell-permeable, selective, and ATP competitive inhibitor of c-Jun N-terminal kinase (JNK; IC₅₀ = 40 nM for JNK-1 & JNK-2 & 90 nM for JNK-3).