ASC directs NF-κB activation by regulating receptor interacting protein-2 (RIP2) caspase-1 interactions
ASC directs NF-κB activation by regulating receptor interacting protein-2 (RIP2) caspase-1 interactions
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DOI:
10.4049/jimmunol.176.8.4979
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发表时间:
2006-04-15
影响因子:
4.4
通讯作者:
Wewers, Mark D.
中科院分区:
文献类型:
--
作者:
Sarkar, Anasuya;Duncan, Michelle;Wewers, Mark D.
Receptor interacting protein-2 (RIP2) is a caspase recruitment domain (CARD)-containing kinase that interacts with caspase-1 and plays an important role in NF-kappa B activation. Apoptosis-associated speck-like protein containing a CARD (ASC) is a PYRIN and CARD-containing molecule, important in the induction of apoptosis and caspase-1 activation. Although RIP2 has also been linked to caspase-1 activation, RIP2 knockout animals fail to show a defect in caspase-1-mediated processing of proIL-1 beta to its active form. Therefore, RIP2 function in binding to caspase-1 remains poorly understood. We hypothesized that caspase-1 may serve as a scaffolding molecule that promotes RIP2 interaction with I kappa B kinase-gamma thus inducing NF-kappa B activation. We further hypothesized that ASC, which also interacts with caspase-1 via its CARD, may interfere with the caspase-1 RIP2 interaction. In HEK293 cells, ASC induced prominent activation of caspase-1 and proIL-1 beta processing. RIP2 transient transfection induced transcription of an NF-kappa B reporter gene. This RIP2-induced NF-kappa B activity and caspase-1 binding was inhibited in a dose-dependent fashion by ASC. Consistent with a role for caspase-1 as a scaffold for RIP2, caspase-1 knockout macrophages were suppressed in their ability to activate NF-kappa B, and septic caspase-1 knockout animals produced less IL-6, a functional marker of NF-kappa B activity. Lastly, THP-1 cells treated with small interfering RNA for ASC decreased their caspase-1 activity while enhancing their NF-kappa B signal. These data suggest that ASC may direct caspase-1 away from RIP2-mediated NF-kappa B activation, toward caspase-1-mediated processing of proIL-1 beta by interfering with the RIP2 caspase-1 interaction.