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Publication : TRAF2 exerts opposing effects on basal and TNFα-induced activation of the classic IKK complex in hematopoietic cells in mice.

First Author  Zhang L Year  2016
Journal  J Cell Sci Volume  129
Issue  7 Pages  1455-67
PubMed ID  26872784 Mgi Jnum  J:249864
Mgi Id  MGI:5923128 Doi  10.1242/jcs.180554
Citation  Zhang L, et al. (2016) TRAF2 exerts opposing effects on basal and TNFalpha-induced activation of the classic IKK complex in hematopoietic cells in mice. J Cell Sci 129(7):1455-67
abstractText  The role of TRAF2 and TRAF5 in TNFalpha-induced NF-kappaB activation has become complicated owing to the accumulation of conflicting data. Here, we report that 7-day-old TRAF2-knockout (KO) and TRAF2 TRAF5 double KO (TRAF2/5-DKO) mice exhibit enhanced canonical IkappaB kinase (IKK) and caspase-8 activation in spleen and liver, and that subsequent knockout of TNFalpha suppresses the basal activity of caspase-8, but not of IKK. In primary TRAF2 KO and TRAF2/5-DKO cells, TNFalpha-induced immediate IKK activation is impaired, whereas delayed IKK activation occurs normally; as such, owing to elevated basal and TNFalpha-induced delayed IKK activation, TNFalpha stimulation leads to significantly increased induction of a subset of NF-kappaB-dependent genes in these cells. In line with this, both TRAF2 KO and TRAF2/5-DKO mice succumb to a sublethal dose of TNFalpha owing to increased expression of NF-kappaB target genes, diarrhea and bradypnea. Notably, depletion of IAP1 and IAP2 (also known as BIRC2 and BIRC3, respectively) also results in elevated basal IKK activation that is independent of autocrine TNFalpha production and that impairs TNFalpha-induced immediate IKK activation. These data reveal that TRAF2, IAP1 and IAP2, but not TRAF5, cooperatively regulate basal and TNFalpha-induced immediate IKK activation.
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