Dual-specific autophosphorylation of kinase IKK2 enables phosphorylation of substrate IκBα through a phosphoenzyme intermediate.

Prateeka Borar, Tapan Biswas, Ankur Chaudhuri, Pallavi Rao T, Swasti Raychaudhuri, Tom Huxford, Saikat Chakrabarti, Gourisankar Ghosh, Smarajit Polley
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Abstract

Rapid and high-fidelity phosphorylation of two serines (S32 and S36) of IκBα by a prototype Ser/Thr kinase IKK2 is critical for fruitful canonical NF-κB activation. Here, we report that IKK2 is a dual specificity Ser/Thr kinase that autophosphorylates itself at tyrosine residues in addition to its activation loop serines. Mutation of one such tyrosine, Y169, located in proximity to the active site, to phenylalanine, renders IKK2 inactive for phosphorylation of S32 of IκBα. Surprisingly, auto-phosphorylated IKK2 relayed phosphate group(s) to IκBα without ATP when ADP is present. We also observed that mutation of K44, an ATP-binding lysine conserved in all protein kinases, to methionine renders IKK2 inactive towards specific phosphorylation of S32 or S36 of IκBα, but not non-specific substrates. These observations highlight an unusual evolution of IKK2, in which autophosphorylation of tyrosine(s) in the activation loop and the invariant ATP-binding K44 residue define its signal-responsive substrate specificity ensuring the fidelity of NF-κB activation.

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激酶IKK2的双特异性自磷酸化使底物IκBα磷酸化而不需要ATP。
原型S/T激酶IKK2对IκBα的两个丝氨酸(S32和S36)的快速高保真磷酸化对于富有成效的典型NF-κB活化至关重要。在这里,我们报道了IKK2是一种双特异性激酶,除了其激活环丝氨酸外,它还在顺式的酪氨酸残基上自我磷酸化。位于活性位点附近的一种酪氨酸Y169突变为苯丙氨酸,使IKK2对IκBα的S32磷酸化没有活性。令人惊讶的是,当ADP存在时,自身磷酸化的IKK2在没有ATP的情况下将磷酸基团传递给IκBα。我们还观察到,K44(一种在所有蛋白激酶中保守的ATP结合赖氨酸)突变为甲硫氨酸,使IKK2对IκBα的S32或S36的特异性磷酸化没有活性,但对非特异性底物没有活性。这些观察结果突出了IKK2的一种不同寻常的进化,其中激活环中酪氨酸的自磷酸化和不变的ATP结合K44残基定义了其信号响应性底物特异性,确保了NF-κB激活的保真度。
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