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Publication : Requirement of FADD, NEMO, and BAX/BAK for aberrant mitochondrial function in tumor necrosis factor alpha-induced necrosis.

First Author  Irrinki KM Year  2011
Journal  Mol Cell Biol Volume  31
Issue  18 Pages  3745-58
PubMed ID  21746883 Mgi Jnum  J:175071
Mgi Id  MGI:5142337 Doi  10.1128/MCB.05303-11
Citation  Irrinki KM, et al. (2011) Requirement of FADD, NEMO, and BAX/BAK for Aberrant Mitochondrial Function in Tumor Necrosis Factor Alpha-Induced Necrosis. Mol Cell Biol 31(18):3745-58
abstractText  Necroptosis represents a form of alternative programmed cell death that is dependent on the kinase RIP1. RIP1-dependent necroptotic death manifests as increased reactive oxygen species (ROS) production in mitochondria and is accompanied by loss of ATP biogenesis and eventual dissipation of mitochondrial membrane potential. Here, we show that tumor necrosis factor alpha (TNF-alpha)-induced necroptosis requires the adaptor proteins FADD and NEMO. FADD was found to mediate formation of the TNF-alpha-induced pronecrotic RIP1-RIP3 kinase complex, whereas the IkappaB Kinase (IKK) subunit NEMO appears to function downstream of RIP1-RIP3. Interestingly, loss of RelA potentiated TNF-alpha-dependent necroptosis, indicating that NEMO regulates necroptosis independently of NF-kappaB. Using both pharmacologic and genetic approaches, we demonstrate that the overexpression of antioxidants alleviates ROS elevation and necroptosis. Finally, elimination of BAX and BAK or overexpression of Bcl-x(L) protects cells from necroptosis at a later step. These findings provide evidence that mitochondria play an amplifying role in inflammation-induced necroptosis.
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