Autophagy plays a protective role during zVAD-induced necrotic cell death
You-Tong Wu1, Hui-Ling Tan, Qing Huang
1Department of Community, Occupational and Family Medicine, Yong Loo Lin School of Medicine, National University of Singapore, Singapore.
Abstract:
The aim of this study is to examine the role of autophagy in cell death by using a well-established system in which zVAD, a pan-caspase inhibitor, induces necrotic cell death in L929 murine fibrosarcoma cells. First, we observed the presence of autophagic hallmarks, including an increased number of autophagosomes and the accumulation of LC3-II in zVAD-treated L929 cells. Since the presence of such autophagic hallmarks could be the result of either increased flux of autophagy or blockage of autophagosome maturation (lysosomal fusion and degradation), we next tested the effect of rapamycin, a specific inhibitor for mTOR, and chloroquine, a lysosomal enzyme inhibitor, on zVAD-induced cell death. To our surprise, rapamycin, known to be an autophagy inducer, blocked zVAD-induced cell death, whereas chloroquine greatly sensitized zVAD-induced cell death in L929 cells. Moreover, similar results with rapamycin and chloroquine were also observed in U937 cells when challenged with zVAD. Consistently, induction of autophagy by serum starvation offered significant protection against zVAD-induced cell death, whereas knockdown of Atg5, Atg7 or Beclin 1 markedly sensitized zVAD-induced cell death in L929 cells. More importantly, Atg genes knockdown completely abolished the protective effect of serum starvation on zVAD-induced cell death. Finally, we demonstrated that zVAD was able to inhibit lysosomal enzyme cathepsin B activity, and subsequently blocked autophagosome maturation. Taken together, in contrast to the previous conception that zVAD induces autophagic cell death, here we provide compelling evidence suggesting that autophagy serves as a cell survival mechanism and suppression of autophagy via inhibition of lysosomal function contributes to zVAD-induced necrotic cell death.
Insights
Autophagy acts as a survival mechanism, not a cause of cell death. Inhibiting lysosomal function enhances zVAD-induced necrotic cell death by blocking autophagosome maturation. This study redefines autophagy's role in cell death.
Area of Science:
- Cell Biology
- Molecular Biology
- Biochemistry
Background:
- Autophagy is a cellular process involved in degradation and recycling.
- The role of autophagy in programmed cell death is complex and debated.
- zVAD, a pan-caspase inhibitor, induces necrotic cell death in L929 cells.
Purpose of the Study:
- To investigate the role of autophagy in zVAD-induced necrotic cell death.
- To determine whether autophagy acts as a survival or death pathway in this context.
- To elucidate the mechanism by which zVAD affects autophagy and cell death.
Main Methods:
- Treatment of L929 and U937 cells with zVAD, rapamycin, and chloroquine.
- Monitoring autophagosome formation and LC3-II accumulation.
- Assessing cell viability and cathepsin B activity.
- Gene knockdown of autophagy-related genes (Atg5, Atg7, Beclin 1).
Main Results:
- zVAD treatment induced autophagic hallmarks (autophagosomes, LC3-II accumulation).
- Rapamycin (autophagy inducer) protected against zVAD-induced cell death, while chloroquine (lysosomal inhibitor) sensitized cells.
- Knockdown of Atg genes sensitized cells to zVAD and abolished protective effects of serum starvation.
- zVAD inhibited cathepsin B activity, blocking autophagosome maturation.
Conclusions:
- Autophagy functions as a cell survival mechanism against zVAD-induced necrosis.
- Inhibition of lysosomal function and subsequent autophagosome maturation contributes to zVAD-induced cell death.
- The findings challenge the notion of zVAD inducing autophagic cell death, highlighting autophagy's protective role.
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