Activated PIK3CD drives innate B cell expansion yet limits B cell-intrinsic immune responses

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Abstract

Activated PI3K-delta syndrome (APDS) is an immunodeficiency caused by gain-of-function mutations in PIK3CD. This disease exhibits complex immune phenotypes including increased IgM, recurrent infection, and impaired vaccine responses. To better understand the impact of B cells in this disease, we generated an inducible model of the common APDS mutation (hPIK3CDE1021K; referred to as aPIK3CD) and intercrossed these mice with B cell-specific Cre models. Mb1-aPIK3CD mice exhibited bone marrow B lymphopenia and, conversely, expansion of the peripheral innate B1a and MZ B cell compartments. aPIK3CD B cells manifest increased pS6 and increased survival at several stages, without alterations in cycling, and baseline increases in plasma cells, natural IgM, and IgG3. Finally, Mb1-aPIK3CD mice exhibited blunted T cell-independent immune responses, and both AID- and CD21-aPIK3CD mice displayed reduced class-switched antibodies following T cell-dependent immunization. Thus, aPIK3CD alters B cell development and function and is counter-productive during immune responses, providing insight into B cell-intrinsic contributions to the APDS phenotype.

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APA

Wray-Dutra, M. N., Al Qureshah, F., Metzler, G., Oukka, M., James, R. G., & Rawlings, D. J. (2018). Activated PIK3CD drives innate B cell expansion yet limits B cell-intrinsic immune responses. Journal of Experimental Medicine, 215(10), 2485–2496. https://doi.org/10.1084/JEM.20180617

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