bioRxiv · 10.1101/2023.06.27.546692
Dual-specific autophosphorylation of kinase IKK2 enables phosphorylation of substrate IkappaBalpha without requiring ATP
Abstract
Rapid and high-fidelity phosphorylation of serine residues at positions 32 and 36 of I{kappa}B by IKK2, a prototypical Ser/Thr kinase, is critical for canonical NF-{kappa}B activation. Here, we report that IKK2 not only phosphorylates substrate serine residues and autophosphorylates its own activation loop, but also autophosphorylates at a tyrosine residue proximal to the active site and is, therefore, a dual-specificity kinase. We observed that mutation of Y169, an autophosphorylatable tyrosine located at the DFG+1 (DLG in IKK1) position, to phenylalanine renders IKK2 incapable of catalyzing phosphorylation at S32 within its I{kappa}B substrate. We also observed that mutation of the phylogenetically conserved ATP-contacting residue K44 in IKK2 to methionine converts IKK2 to an enzyme that no longer catalyzes specific phosphorylation of I{kappa}B at S32 or S36, but rather directs phosphorylation of I{kappa}B at other residues. Lastly, we report evidence of a phospho-relay from autophosphorylated IKK2 to I{kappa}B in the presence of ADP. These observations suggest an unusual evolution of IKK2, in which autophosphorylation of tyrosine(s) in the activation loop, and the conserved ATP-contacting K44 residue provide its signal-responsive substrate specificity and ensure fidelity during NF-{kappa}B activation.
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Polley, S., Borar, P., Biswas, T., Huxford, T., Ghosh, G.. 2023-06-27. Dual-specific autophosphorylation of kinase IKK2 enables phosphorylation of substrate IkappaBalpha without requiring ATP. https://doi.org/10.1101/2023.06.27.546692
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