Essential requirement for nicastrin in marginal zone and B-1 B cell development.

Choi, Jin Huk; Han, Jonghee; Theodoropoulos, Panayotis C; Zhong, Xue; Wang, Jianhui; Medler, Dawson; Ludwig, Sara; Zhan, Xiaoming et al. · Proc Natl Acad Sci U S A · 2020

basic_science · Level V

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Abstract

γ-secretase is an intramembrane protease complex that catalyzes the proteolytic cleavage of amyloid precursor protein and Notch. Impaired γ-secretase function is associated with the development of Alzheimer's disease and familial acne inversa in humans. In a forward genetic screen of mice with <i>N</i>-ethyl-<i>N</i>-nitrosourea-induced mutations for defects in adaptive immunity, we identified animals within a single pedigree exhibiting both hypopigmentation of the fur and diminished T cell-independent (TI) antibody responses. The causative mutation was in <i>Ncstn</i>, an essential gene encoding the protein nicastrin (NCSTN), a member of the γ-secretase complex that functions to recruit substrates for proteolysis. The missense mutation severely limits the glycosylation of NCSTN to its mature form and impairs the integrity of the γ-secretase complex as well as its catalytic activity toward its substrate Notch, a critical regulator of B cell and T cell development. Strikingly, however, this missense mutation affects B cell development but not thymocyte or T cell development. The <i>Ncstn</i> allele uncovered in these studies reveals an essential requirement for NCSTN during the type 2 transitional-marginal zone precursor stage and peritoneal B-1 B cell development, the TI antibody response, fur pigmentation, and intestinal homeostasis in mice.

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