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Review
. 2019 May;143(5):1676-1687.
doi: 10.1016/j.jaci.2019.03.017.

PI3K pathway defects leading to immunodeficiency and immune dysregulation

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Review

PI3K pathway defects leading to immunodeficiency and immune dysregulation

Cristiane J Nunes-Santos et al. J Allergy Clin Immunol. 2019 May.

Abstract

The phosphatidylinositol 3-kinase (PI3K) signaling pathway is involved in a broad range of cellular processes, including growth, metabolism, differentiation, proliferation, motility, and survival. The PI3Kδ enzyme complex is primarily present in the immune system and comprises a catalytic (p110δ) and regulatory (p85α) subunit. Dynamic regulation of PI3Kδ activity is required to ensure normal function and differentiation of immune cells. In the last decade, discovery of germline mutations in genes involved in the PI3Kδ pathway (PIK3CD, PIK3R1, or phosphatase and tensin homolog [PTEN]) proved that both overactivation and underactivation (gain of function and loss of function, respectively) of PI3Kδ lead to impaired and dysregulated immunity. Although a small group of patients reported to underactivate PI3Kδ show predominantly humoral defects and autoimmune features, more than 200 patients have been described with overactivation of PI3Kδ, presenting with a much more complex phenotype of combined immunodeficiency and immune dysregulation. The clinical and immunologic characterization, as well as current pathophysiologic understanding and specific therapies for PI3K pathway defects leading to immunodeficiency and immune dysregulation, are reviewed here.

Keywords: PIK3CD; PIK3R1; Phosphatidylinositol 3–kinase δ; activated phosphoinositide 3–kinase δ syndrome; mechanistic target of rapamycin pathway; p110δ; p85α; phosphatase and tensin homolog.

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