Microglia-derived TNFα induces apoptosis in neural precursor cells via transcriptional activation of the Bcl-2 family member Puma

被引:0
作者
J Guadagno
X Xu
M Karajgikar
A Brown
S P Cregan
机构
[1] Robarts Research Institute,Department of Physiology and Pharmacology
[2] University of Western Ontario,undefined
[3] University of Western Ontario,undefined
来源
Cell Death & Disease | 2013年 / 4卷
关键词
apoptosis; neuroinflammation; neural precursor cells; microglia;
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学科分类号
摘要
Neuroinflammation is a common feature of acute neurological conditions such as stroke and spinal cord injury, as well as neurodegenerative conditions such as Parkinson’s disease, Alzheimer’s disease, and amyotrophic lateral sclerosis. Previous studies have demonstrated that acute neuroinflammation can adversely affect the survival of neural precursor cells (NPCs) and thereby limit the capacity for regeneration and repair. However, the mechanisms by which neuroinflammatory processes induce NPC death remain unclear. Microglia are key mediators of neuroinflammation and when activated to induce a pro-inflammatory state produce a number of factors that could affect NPC survival. Importantly, in the present study we demonstrate that tumor necrosis factor α (TNFα) produced by lipopolysaccharide-activated microglia is necessary and sufficient to trigger apoptosis in mouse NPCs in vitro. Furthermore, we demonstrate that microglia-derived TNFα induces NPC apoptosis via a mitochondrial pathway regulated by the Bcl-2 family protein Bax. BH3-only proteins are known to play a key role in regulating Bax activation and we demonstrate that microglia-derived TNFα induces the expression of the BH3-only family member Puma in NPCs via an NF-κB-dependent mechanism. Specifically, we show that NF-κB is activated in NPCs treated with conditioned media from activated microglia and that Puma induction and NPC apoptosis is blocked by the NF-κB inhibitor BAY-117082. Importantly, we have determined that NPC apoptosis induced by activated microglia-derived TNFα is attenuated in Puma-deficient NPCs, indicating that Puma induction is required for NPC death. Consistent with this, we demonstrate that Puma-deficient NPCs exhibit an ∼13-fold increase in survival as compared with wild-type NPCs following transplantation into the inflammatory environment of the injured spinal cord in vivo. In summary, we have identified a key signaling pathway that regulates neuroinflammation induced apoptosis in NPCs in vitro and in vivo that could be targeted to promote regeneration and repair in diverse neurological conditions.
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页码:e538 / e538
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[1]  
Taupin P(2002)Adult neurogenesis and neural stem cells of the central nervous system in mammals J Neurosci Res 69 745-749
[2]  
Gage FH(2009)Inflammation mediates varying effects in neurogenesis: relevance to the pathogenesis of brain injury and neurodegenerative disorders J Neurochem 108 1343-1359
[3]  
Whitney NP(2002)Caspase-mediated death of newly formed neurons in the adult rat dentate gyrus following status epilepticus Eur J Neurosci 16 1463-1471
[4]  
Eidem TM(2002)Neuronal replacement from endogenous precursors in the adult brain after stroke Nat Med 8 963-970
[5]  
Peng H(2010)Microglia in neurodegenerative disease Nat Rev Neurol 6 193-201
[6]  
Huang Y(2009)Brain inflammation and adult neurogenesis: the dual role of microglia Neuroscience 158 1021-1029
[7]  
Zheng JC(2009)Microglia: gatekeepers of central nervous system immunology J Leukoc Biol 85 352-370
[8]  
Ekdahl CT(2003)Migration and differentiation of neural precursor cells can be directed by microglia Proc Natl Acad Sci USA 100 15983-15988
[9]  
Mohapel P(2006)Microglia instruct subventricular zone neurogenesis Glia 54 815-825
[10]  
Weber E(2008) neuronal and glial differentiation from embryonic or adult neural precursor cells are differently affected by chronic or acute activation of microglia Glia 56 412-425