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Zinc(II) ion mediates tamoxifen-induced autophagy and cell death in MCF-7 breast cancer cell line
Authors:Jung Jin Hwang  Ha Na Kim  Jean Kim  Dong-Hyung Cho  Mi Joung Kim  Yong-Sook Kim  Yunha Kim  Sung-Jin Park  Jae-Young Koh
Institution:(1) Institute for Innovative Cancer Research, College of Medicine, University of Ulsan, Asan Medical Center, Seoul, 138-736, Korea;(2) Neural Injury Research Lab, Asan Institute for Life Science, College of Medicine, University of Ulsan, Asan Medical Center, Seoul, 138-736, Korea;(3) Department of Neurology, College of Medicine, University of Ulsan, 388-1 Poongnap-Dong Songpa-Gu, Seoul, 138-736, Korea;(4) Present address: Laboratory of Bioimaging Probe Development, Singapore Bioimaging Consortium, Agency for Science, Technology and Research (A*STAR), Singapore, 138667, Republic of Singapore;
Abstract:Treatment of MCF-7 cells with tamoxifen induced vacuole formation and cell death. Levels of the autophagy marker, microtubule-associated protein light chain 3 (LC3)-II also increased, and GFP-LC3 accumulated in and around vacuoles in MCF-7 cells exposed to tamoxifen, indicating that autophagy is involved in tamoxifen-induced changes. Live-cell confocal microscopy with FluoZin-3 staining and transmission electron microscopy with autometallographic staining revealed that labile zinc(II) ion (Zn2+) accumulated in most acidic LC3(+) autophagic vacuoles (AVs). Chelation of Zn2+ with N,N,N,N′-tetrakis (2-pyridylmethyl) ethylenediamine (TPEN) blocked the increase in phospho-Erk and LC3-II levels, and attenuated AV formation and cell death. Conversely, the addition of ZnCl2 markedly potentiated tamoxifen-induced extracellular signal-regulated kinase (Erk) activation, autophagy and cell death, indicating that Zn2+ has an important role in these events. Tamoxifen-induced death was accompanied by increased oxidative stress and lysosomal membrane permeabilization (LMP) represented as release of lysosomal cathepsins into cytosol. Treatment with the antioxidant N-acetyl-l-cysteine (NAC) blunted the increase in Zn2+ levels and reduced LC3-II conversion, cathepsin D release and cell death induced by tamoxifen. And cathepsin inhibitors attenuated cell death, indicating that LMP contributes to tamoxifen-induced cell death. Moreover, TPEN blocked tamoxifen-induced cathepsin D release and increase in oxidative stress. The present results indicate that Zn2+ contributes to tamoxifen-induced autophagic cell death via increase in oxidative stress and induction of LMP.
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