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December 1, 2001Molecular and Cellular Biology75 citationsOpen Access

Resistance to Tumor Necrosis Factor-Induced Cell Death Mediated by PMCA4 Deficiency

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KOKoh OnoXWXiaofei WangJHJiahuai Han

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Abstract

We used retrovirus insertion-mediated random mutagenesis to generate tumor necrosis factor (TNF)-resistant lines from L929 cells. Using this approach, we discovered that the plasma membrane calcium ATPase 4 (PMCA4) is required for TNF-induced cell death in L929 cells. Under basal conditions, PMCA4-deficient (PMCA(mut)) cells have a normal phenotype. However, stimulation with TNF induces an abnormal increase in the intracellular calcium concentration (Ca(2+)(i)). The substantially elevated Ca(2+)(i) caused resistance to TNF-induced cell death. We found that an increase in the total volume of acidic compartments (VAC), mainly constituted by lysosomes, is a common event in cell death caused by a variety of agonists. The increased Ca(2+)(i) in PMCA(mut) cells promoted lysosome exocytosis, which, at least in part, accounted for the inhibition of TNF-induced increase in VAC and cell death. Promoting lysosome exocytosis by calcium inhibited TNF-induced cell death in wild-type L929 cells, while inhibition of lysosome exocytosis or increase of VAC by sucrose restored the sensitivity of PMCA(mut) cells to TNF-induced cell death. Thus, increase of the volume of acidic compartment is a part of the cell death process, and the antideath effect of calcium is mediated, at least in part, by inhibition of the TNF-induced increase in VAC.

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Cite This Study

Ono et al. (2001) studied this question.

synapsesocial.com/papers/6a20824aca5c5b2ddfa5e731https://doi.org/10.1128/mcb.21.24.8276-8288.2001
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