Hu Yue, Fortini Mark E
University of Pennsylvania School of Medicine, Philadelphia 19104, USA.
J Cell Biol. 2003 May 26;161(4):685-90. doi: 10.1083/jcb.200304014.
The gamma-secretase complex is required for intramembrane cleavage of several integral membrane proteins, including the Notch receptor, where it generates an active signaling fragment. Four putative gamma-secretase components have been identified-presenilin (Psn), nicastrin (Nct), Aph-1, and Pen-2. Here, we use a stepwise coexpression approach to investigate the role of each new component in gamma-secretase assembly and activation. Coexpression of all four proteins leads to high level accumulation of mature Psn and increased proteolysis of Notch. Aph-1 and Nct may form a subcomplex that stabilizes the Psn holoprotein at an early step in gamma-secretase assembly. Subcomplex levels of Aph-1 are down-regulated by stepwise addition of Psn, suggesting that Aph-1 might not enter the mature complex. In contrast, Pen-2 accumulates proportionally with Psn, and is associated with Psn endoproteolysis during gamma-secretase assembly. These results demonstrate that Aph-1 and Pen-2 are essential cofactors for Psn, but that they play different roles in gamma-secretase assembly and activation.
γ-分泌酶复合物是几种整合膜蛋白进行膜内切割所必需的,其中包括Notch受体,它在Notch受体上产生一个活性信号片段。已经鉴定出四种假定的γ-分泌酶成分——早老素(Psn)、尼卡斯特林(Nct)、Aph-1和Pen-2。在此,我们采用逐步共表达方法来研究每个新成分在γ-分泌酶组装和激活中的作用。所有四种蛋白质的共表达导致成熟Psn的高水平积累以及Notch蛋白水解增加。Aph-1和Nct可能形成一个亚复合物,在γ-分泌酶组装的早期阶段稳定Psn全蛋白。通过逐步添加Psn可下调Aph-1的亚复合物水平,这表明Aph-1可能不会进入成熟复合物。相反,Pen-2与Psn成比例积累,并在γ-分泌酶组装过程中与Psn的内蛋白水解有关。这些结果表明,Aph-1和Pen-2是Psn的必需辅助因子,但它们在γ-分泌酶组装和激活中发挥不同作用。