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February 28, 2013Cell Reports254 citationsOpen Access

Crystal Structure and Mechanism of Activation of TANK-Binding Kinase 1

ALAmédé LarabiJDJuliette M. DevosSNSze‐Ling Ng

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Abstract

Tank-binding kinase I (TBK1) plays a key role in the innate immune system by integrating signals from pattern-recognition receptors. Here, we report the X-ray crystal structures of inhibitor-bound inactive and active TBK1 determined to 2.6 Å and 4.0 Å resolution, respectively. The structures reveal a compact dimer made up of trimodular subunits containing an N-terminal kinase domain (KD), a ubiquitin-like domain (ULD), and an α-helical scaffold dimerization domain (SDD). Activation rearranges the KD into an active conformation while maintaining the overall dimer conformation. Low-resolution SAXS studies reveal that the missing C-terminal domain (CTD) extends away from the main body of the kinase dimer. Mutants that interfere with TBK1 dimerization show significantly reduced trans-autophosphorylation but retain the ability to bind adaptor proteins through the CTD. Our results provide detailed insights into the architecture of TBK1 and the molecular mechanism of activation.

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Larabi et al. (2013) studied this question.

synapsesocial.com/papers/6a0582a20012b80f37a20beahttps://doi.org/10.1016/j.celrep.2013.01.034
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