Repository logo
 

Probing the Solution Structure of IκB Kinase (IKK) Subunit γ and Its Interaction with Kaposi Sarcoma-associated Herpes Virus Flice-interacting Protein and IKK Subunit β by EPR Spectroscopy.

Published version
Peer-reviewed

Loading...
Thumbnail Image

Type

Article

Change log

Authors

Bagnéris, Claire 
Rogala, Kacper B 
Baratchian, Mehdi 
Zamfir, Vlad 
Kunze, Micha BA 

Abstract

Viral flice-interacting protein (vFLIP), encoded by the oncogenic Kaposi sarcoma-associated herpes virus (KSHV), constitutively activates the canonical nuclear factor κ-light-chain-enhancer of activated B cells (NF-κB) pathway. This is achieved through subversion of the IκB kinase (IKK) complex (or signalosome), which involves a physical interaction between vFLIP and the modulatory subunit IKKγ. Although this interaction has been examined both in vivo and in vitro, the mechanism by which vFLIP activates the kinase remains to be determined. Because IKKγ functions as a scaffold, recruiting both vFLIP and the IKKα/β subunits, it has been proposed that binding of vFLIP could trigger a structural rearrangement in IKKγ conducive to activation. To investigate this hypothesis we engineered a series of mutants along the length of the IKKγ molecule that could be individually modified with nitroxide spin labels. Subsequent distance measurements using electron paramagnetic resonance spectroscopy combined with molecular modeling and molecular dynamics simulations revealed that IKKγ is a parallel coiled-coil whose response to binding of vFLIP or IKKβ is localized twisting/stiffening and not large-scale rearrangements. The coiled-coil comprises N- and C-terminal regions with distinct registers accommodated by a twist: this structural motif is exploited by vFLIP, allowing it to bind and subsequently activate the NF-κB pathway. In vivo assays confirm that NF-κB activation by vFLIP only requires the N-terminal region up to the transition between the registers, which is located directly C-terminal of the vFLIP binding site.

Description

Keywords

IKKγ, NEMO, NF-kappa B (NF-κB), electron paramagnetic resonance (EPR), molecular dynamics, molecular modeling, protein structure, signalosome, vFLIP, virology, Amino Acid Motifs, Binding Sites, Electron Spin Resonance Spectroscopy, Herpesvirus 8, Human, Humans, I-kappa B Kinase, Protein Binding, Sarcoma, Kaposi, Viral Proteins

Journal Title

J Biol Chem

Conference Name

Journal ISSN

0021-9258
1083-351X

Volume Title

290

Publisher

Elsevier BV
Sponsorship
Medical Research Council (MC_UU_12022/9)
MRC (unknown)
MRC
Royal Society (Paul Instrument Fund) (UF130039)