Berechid Bridget E, Kitzmann Magali, Foltz Daniel R, Roach Arthur H, Seiffert Dietmar, Thompson Lorin A, Olson Richard E, Bernstein Alan, Donoviel Dorit B, Nye Jeffrey S
Department of Molecular Pharmacology/Biological Chemistry, Northwestern University, Chicago, Illinois 60611, USA.
J Biol Chem. 2002 Mar 8;277(10):8154-65. doi: 10.1074/jbc.M108238200. Epub 2001 Dec 26.
Presenilin (PS) proteins control the proteolytic cleavage that precedes nuclear access of the Notch intracellular domain. Here we observe that a partial activation of the HES1 promoter can be detected in PS1/PS2 (PS1/2) double null cells using Notch1 Delta E constructs or following Delta 1 stimulation, despite an apparent abolition of the production and nuclear accumulation of the Notch intracellular domain. PS1/2-independent Notch activation is sensitive to Numblike, a physiological inhibitor of Notch. PS1/2-independent Notch signaling is also inhibited by an active gamma-secretase inhibitor in the low micromolar range and is not inhibited by an inactive analogue, similar to PS-dependent Notch signaling. However, experiments using a Notch1-Gal4-VP16 fusion protein indicate that the PS1/2-independent activity does not release Gal4-VP16 and is therefore unlikely to proceed via an intramembranous cleavage. These data reveal that a novel PS1/2-independent mechanism plays a partial role in Notch signal transduction.
早老素(PS)蛋白控制着Notch细胞内结构域进入细胞核之前的蛋白水解切割过程。在此我们观察到,尽管Notch细胞内结构域的产生和核积累明显消失,但使用Notch1 Delta E构建体或在Delta 1刺激后,在PS1/PS2双敲除细胞中可检测到HES1启动子的部分激活。不依赖PS1/2的Notch激活对Notch的生理抑制剂Numblike敏感。低微摩尔浓度的活性γ-分泌酶抑制剂也可抑制不依赖PS1/2的Notch信号传导,且其不被无活性类似物抑制,这与依赖PS的Notch信号传导相似。然而,使用Notch1-Gal4-VP16融合蛋白的实验表明,不依赖PS1/2的活性不会释放Gal4-VP16,因此不太可能通过膜内切割进行。这些数据揭示了一种新的不依赖PS1/2的机制在Notch信号转导中发挥部分作用。