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Phosphorylation and ubiquitination of the IkappaB kinase complex by two distinct signaling pathways.


ABSTRACT: The IkappaB kinase (IKK) complex serves as the master regulator for the activation of NF-kappaB by various stimuli. It contains two catalytic subunits, IKKalpha and IKKbeta, and a regulatory subunit, IKKgamma/NEMO. The activation of IKK complex is dependent on the phosphorylation of IKKalpha/beta at its activation loop and the K63-linked ubiquitination of NEMO. However, the molecular mechanism by which these inducible modifications occur remains undefined. Here, we demonstrate that CARMA1, a key scaffold molecule, is essential to regulate NEMO ubiquitination upon T-cell receptor (TCR) stimulation. However, the phosphorylation of IKKalpha/beta activation loop is independent of CARMA1 or NEMO ubiquitination. Further, we provide evidence that TAK1 is activated and recruited to the synapses in a CARMA1-independent manner and mediate IKKalpha/beta phosphorylation. Thus, our study provides the biochemical and genetic evidence that phosphorylation of IKKalpha/beta and ubiquitination of NEMO are regulated by two distinct pathways upon TCR stimulation.

SUBMITTER: Shambharkar PB 

PROVIDER: S-EPMC1847656 | biostudies-literature | 2007 Apr

REPOSITORIES: biostudies-literature

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Phosphorylation and ubiquitination of the IkappaB kinase complex by two distinct signaling pathways.

Shambharkar Prashant B PB   Blonska Marzenna M   Pappu Bhanu P BP   Li Hongxiu H   You Yun Y   Sakurai Hiroaki H   Darnay Bryant G BG   Hara Hiromitsu H   Penninger Josef J   Lin Xin X  

The EMBO journal 20070315 7


The IkappaB kinase (IKK) complex serves as the master regulator for the activation of NF-kappaB by various stimuli. It contains two catalytic subunits, IKKalpha and IKKbeta, and a regulatory subunit, IKKgamma/NEMO. The activation of IKK complex is dependent on the phosphorylation of IKKalpha/beta at its activation loop and the K63-linked ubiquitination of NEMO. However, the molecular mechanism by which these inducible modifications occur remains undefined. Here, we demonstrate that CARMA1, a key  ...[more]

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