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尼卡斯特林对于边缘区和 B-1B 细胞发育的基本要求。

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

机构信息

Center for the Genetics of Host Defense, University of Texas Southwestern Medical Center, Dallas, TX 75390;

Department of Immunology, University of Texas Southwestern Medical Center, Dallas, TX 75390.

出版信息

Proc Natl Acad Sci U S A. 2020 Mar 3;117(9):4894-4901. doi: 10.1073/pnas.1916645117. Epub 2020 Feb 18.

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 -ethyl--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 , 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 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.

摘要

γ-分泌酶是一种跨膜蛋白酶复合物,可催化淀粉样前体蛋白和 Notch 的蛋白水解切割。γ-分泌酶功能障碍与人类阿尔茨海默病和家族性逆痤疮的发生有关。在对 -乙基--亚硝脲诱导的突变的小鼠进行正向遗传筛选以寻找适应性免疫缺陷时,我们在一个单一的家系内发现了既表现出毛发色素减退又表现出 T 细胞非依赖性(TI)抗体反应降低的动物。致病突变位于 ,这是编码蛋白 nicastrin(NCSTN)的必需基因,NCSTN 是 γ-分泌酶复合物的成员,其功能是募集用于蛋白水解的底物。错义突变严重限制了 NCSTN 的糖基化使其成为成熟形式,并损害了 γ-分泌酶复合物及其对其底物 Notch 的催化活性,Notch 是 B 细胞和 T 细胞发育的关键调节剂。然而,令人惊讶的是,这种错义突变影响 B 细胞发育,但不影响胸腺细胞或 T 细胞发育。在这些研究中发现的 等位基因揭示了 NCSTN 在 2 型过渡性边缘区前体阶段和腹膜 B-1 B 细胞发育、TI 抗体反应、毛发色素沉着和肠道内稳态中的必需性。

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