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  • Autophagy defect is associated with low glucose-induced apoptosis in 661W photoreceptor cells.

Autophagy defect is associated with low glucose-induced apoptosis in 661W photoreceptor cells.

PloS one (2013-09-26)
Delphine Balmer, Martine Emery, Pénélope Andreux, Johan Auwerx, Vanessa Ginet, Julien Puyal, Daniel F Schorderet, Raphaël Roduit
要旨

Glucose is an important metabolic substrate of the retina and diabetic patients have to maintain a strict normoglycemia to avoid diabetes secondary effects, including cardiovascular disease, nephropathy, neuropathy and retinopathy. Others and we recently demonstrated the potential role of hypoglycemia in diabetic retinopathy. We showed acute hypoglycemia to induce retinal cell death both in vivo during an hyperinsulinemic/hypoglycemic clamp and in vitro in 661W photoreceptor cells cultured at low glucose concentration. In the present study, we showed low glucose to induce a decrease of BCL2 and BCL-XL anti-apoptotic proteins expression, leading to an increase of free pro-apoptotic BAX. In parallel, we showed that, in retinal cells, low glucose-induced apoptosis is involved in the process of autophagosomes formation through the AMPK/RAPTOR/mTOR pathway. Moreover, the decrease of LAMP2a expression led to a defect in the autophagosome/lysosome fusion process. Specific inhibition of autophagy, either by 3-methyladenine or by down-regulation of ATG5 or ATG7 proteins expression, increased caspase 3 activation and 661W cell death. We show that low glucose modifies the delicate equilibrium between apoptosis and autophagy. Cells struggled against low nutrient condition-induced apoptosis by starting an autophagic process, which led to cell death when inhibited. We conclude that autophagy defect is associated with low glucose-induced 661W cells death that could play a role in diabetic retinopathy. These results could modify the way of addressing negative effects of hypoglycemia. Short-term modulation of autophagy could be envisioned to treat diabetic patients in order to avoid secondary complications of the disease.

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Sigma-Aldrich
モノクロナール抗β-アクチン マウス宿主抗体, clone AC-15, ascites fluid
Roche
In Situ細胞死検出キット、TMRレッド, sufficient for ≤50 tests
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Sodium citrate dihydrate, ≥99%, FG
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抗αチューブリン抗体、マウスモノクローナル, clone B-5-1-2, purified from hybridoma cell culture
Sigma-Aldrich
抗アクチン抗体、クローンC4, ascites fluid, clone C4, Chemicon®
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抗p62/SQSTM1 ウサギ宿主抗体, ~1 mg/mL, affinity isolated antibody, buffered aqueous solution
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抗ヤギIgG (全分子)-ペルオキシダーゼ ウサギ宿主抗体, affinity isolated antibody, buffered aqueous solution