Defective kinase activity of IKKα leads to combined immunodeficiency and disruption of immune tolerance in humans.

Cildir, Gökhan; Aba, Umran; Pehlivan, Damla; Tvorogov, Denis; Warnock, Nicholas I; Ipsir, Canberk; Arik, Elif; Kok, Chung Hoow et al. · Nat Commun · 2024

case_report · Level V

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Abstract

IKKα is a multifunctional serine/threonine kinase that controls various biological processes, either dependent on or independent of its kinase activity. However, the importance of the kinase function of IKKα in human physiology remains unknown since no biallelic variants disrupting its kinase activity have been reported. In this study, we present a homozygous germline missense variant in the kinase domain of IKKα, which is present in three children from two Turkish families. This variant, referred to as IKKα<sup>G167R</sup>, is in the activation segment of the kinase domain and affects the conserved (DF/LG) motif responsible for coordinating magnesium atoms for ATP binding. As a result, IKKα<sup>G167R</sup> abolishes the kinase activity of IKKα, leading to impaired activation of the non-canonical NF-κB pathway. Patients carrying IKKα<sup>G167R</sup> exhibit a range of immune system abnormalities, including the absence of secondary lymphoid organs, hypogammaglobulinemia and limited diversity of T and B cell receptors with evidence of autoreactivity. Overall, our findings indicate that, unlike a nonsense IKKα variant that results in early embryonic lethality in humans, the deficiency of IKKα's kinase activity is compatible with human life. However, it significantly disrupts the homeostasis of the immune system, underscoring the essential and non-redundant kinase function of IKKα in humans.

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