The Hospital for Sick Children, Program in Developmental and Stem Cell Biology and Department of Molecular Genetics, University of Toronto, MaRS Toronto Medical Discovery Tower, 101 College Street, Room 12-305, Toronto, ON M5G 1L7, Canada.
Development. 2013 Feb;140(4):810-9. doi: 10.1242/dev.081356. Epub 2013 Jan 14.
Presenilins were identified as causative factors in familial Alzheimer's disease and also play an essential role in Notch signaling during development. We previously identified FKBP14, a member of the family of FK506-binding proteins (FKBPs), as a modifier of Presenilin in Drosophila. FKBPs are highly conserved peptidyl-prolyl cis-trans isomerases that play integral roles in protein folding, assembly and trafficking. Although FKBPs have been implicated in a broad range of biological processes, they are non-essential in yeast and their role in the development of multicellular organisms remains unclear. We show that FKBP14 is an essential gene in Drosophila and that loss of FKBP14 gives rise to specific defects in eye, bristle and wing development. FKBP14 mutants genetically interact with components of the Notch pathway, indicating that these phenotypes are associated, at least in part, with dysregulation of Notch signaling. We show that whereas Notch trafficking to the membrane is unaffected in FKBP14 mutants, levels of Notch target genes are reduced, suggesting that FKBP14 acts downstream of Notch activation at the membrane. Consistent with this model, we find that Presenilin protein levels and γ-secretase activity are reduced in FKBP14 null mutants. Altogether, our data demonstrate that FKBP14 plays an essential role in development, one aspect of which includes regulating members of the Notch signaling pathway.
早老素被鉴定为家族性阿尔茨海默病的致病因素,在发育过程中也对 Notch 信号通路发挥重要作用。我们之前在果蝇中鉴定出 FKBP14(FK506 结合蛋白家族的一个成员)是早老素的修饰因子。FKBP 是高度保守的肽脯氨酰顺反异构酶,在蛋白质折叠、组装和运输中发挥重要作用。虽然 FKBPs 与广泛的生物学过程有关,但在酵母中它们是非必需的,它们在多细胞生物发育中的作用仍不清楚。我们表明,FKBP14 是果蝇中的必需基因,FKBP14 的缺失会导致眼睛、刚毛和翅膀发育的特定缺陷。FKBP14 突变体与 Notch 通路的组成部分在遗传上相互作用,表明这些表型至少部分与 Notch 信号通路的失调有关。我们表明,虽然 Notch 向膜的运输在 FKBP14 突变体中不受影响,但 Notch 靶基因的水平降低,表明 FKBP14 在膜上 Notch 激活的下游起作用。与该模型一致,我们发现 FKBP14 缺失突变体中的 Presenilin 蛋白水平和 γ-分泌酶活性降低。总之,我们的数据表明 FKBP14 在发育中发挥着重要作用,其中一个方面包括调节 Notch 信号通路的成员。