Literature DB >> 11815618

Kinetic mechanisms of IkappaB-related kinases (IKK) inducible IKK and TBK-1 differ from IKK-1/IKK-2 heterodimer.

Q Khai Huynh1, Nandini Kishore, Sumathy Mathialagan, Ann M Donnelly, Catherine S Tripp.   

Abstract

Nuclear factor-kappaB activation depends on phosphorylation and degradation of its inhibitor protein, IkappaB. The phosphorylation of IkappaBalpha on Ser(32) and Ser(36) is initiated by an IkappaB kinase (IKK) complex that includes a catalytic heterodimer composed of IkappaB kinase 1 (IKK-1) and IkappaB kinase 2 (IKK-2) as well as a regulatory adaptor subunit, NF-kappaB essential modulator. Recently, two related IkappaB kinases, TBK-1 and IKK-i, have been described. TBK-1 and IKK-i show sequence and structural homology to IKK-1 and IKK-2. TBK-1 and IKK-i phosphorylate Ser(36) of IkappaBalpha. We describe the kinetic mechanisms in terms of substrate and product inhibition of the recombinant human (rh) proteins, rhTBK-1, rhIKK-I, and rhIKK-1/rhIKK-2 heterodimers. The results indicate that although each of these enzymes exhibits a random sequential kinetic mechanism, the effect of the binding of one substrate on the affinity of the other substrate is significantly different. ATP has no effect on the binding of an IkappaBalpha peptide for the rhIKK-1/rhIKK-2 heterodimer (alpha = 0.99), whereas the binding of ATP decreased the affinity of the IkappaBalpha peptide for both rhTBK-1 (alpha = 10.16) and rhIKK-i (alpha = 62.28). Furthermore, the dissociation constants of ATP for rhTBK-1 and rhIKK-i are between the expected values for kinases, whereas the dissociation constants of the IkappaBalpha peptide for each IKK isoforms is unique with rhTBK-1 being the highest (K(IkappaBalpha) = 69.87 microm), followed by rhIKK-i (K(IkappaBalpha) = 5.47 microm) and rhIKK-1/rhIKK-2 heterodimers (K(IkappaBalpha) = 0.12 microm). Thus this family of IkappaB kinases has very unique kinetic properties.

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Year:  2002        PMID: 11815618     DOI: 10.1074/jbc.M111526200

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  4 in total

1.  Genomic structure and functional characterization of the promoter region of human IkappaB kinase-related kinase IKKi/IKKvarepsilon gene.

Authors:  Naizhen Wang; Salahuddin Ahmed; Tariq M Haqqi
Journal:  Gene       Date:  2005-06-20       Impact factor: 3.688

2.  NF-κB activation coordinated by IKKβ and IKKε enables latent infection of Kaposi's sarcoma-associated herpesvirus.

Authors:  Zhiheng He; Jun Zhao; Junjie Zhang; Jae U Jung; Pinghui Feng
Journal:  J Virol       Date:  2013-10-23       Impact factor: 5.103

3.  Activation of TBK1 and IKKvarepsilon kinases by vesicular stomatitis virus infection and the role of viral ribonucleoprotein in the development of interferon antiviral immunity.

Authors:  Benjamin R tenOever; Sonia Sharma; Wen Zou; Qiang Sun; Nathalie Grandvaux; Ilkka Julkunen; Hiroaki Hemmi; M Yamamoto; Shizuo Akira; Wen-Chen Yeh; Rongtuan Lin; John Hiscott
Journal:  J Virol       Date:  2004-10       Impact factor: 5.103

4.  Mechanism of endogenous regulation of the type I interferon response by suppressor of IκB kinase epsilon (SIKE), a novel substrate of TANK-binding kinase 1 (TBK1).

Authors:  James D Marion; Charlotte F Roberts; R Jason Call; Jonathan L Forbes; Kristina T Nelson; J Ellis Bell; Jessica K Bell
Journal:  J Biol Chem       Date:  2013-05-06       Impact factor: 5.157

  4 in total

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