Fassa Angeliki, Mehta Pankaj, Efthimiopoulos Spiros
Division of Animal and Human Physiology, Department of Biology, National and Kapodistrian University of Athens, Panepistimiopolis, Ilisia, Athens, Greece.
J Neurosci Res. 2005 Oct 15;82(2):214-24. doi: 10.1002/jnr.20642.
We hypothesized that the physical interaction between the amyloid precursor protein (APP) and Notch 1 (N1) may be mediating the reported cross-talk between the respective signaling pathways. Immunoprecipitation of mouse N1 (mN1) or extracellular domain truncated mN1 (mN1-TM, mimics TACE-produced membrane-bound C-terminal fragment) specifically coprecipitated APP(751). Conversely, immunoprecipitation of APP(751) specifically coprecipitated mN1, furin-generated membrane-bound mN1 C-terminal fragment (f.mN1-TM), or mN1-TM. The London mutation of APP did not affect the APP(751)/mN1 interaction. Coexpression of APP(751) and mN1 did not affect APP processing or production of mN1 intracellular domain (mNICD). The APP(751)/mN1 interaction was Numb-independent, insofar as it was observed in HEK293 cells that lack detectable levels of Numb and was unaffected by the expression of exogenous Numb or deletion of the APP cytoplasmic domain, including the Numb-binding YENPTY sequence. This interaction was unaffected even when the N-terminal 647 amino acids of APP were replaced by a sequence of secreted alkaline phosphatase. These data combined with data showing interaction between mN1-TM and APP(751) suggest that their transmebrane domains and short sequences around them are sufficient for the interaction and that APP(751) and mN1 interact in cis. Our results imply novel functions of APP and/or N1 that derive from their interaction.
我们推测淀粉样前体蛋白(APP)与Notch 1(N1)之间的物理相互作用可能介导了各自信号通路之间已报道的相互作用。对小鼠N1(mN1)或细胞外结构域截短的mN1(mN1-TM,模拟肿瘤坏死因子-α转换酶(TACE)产生的膜结合C末端片段)进行免疫沉淀,可特异性共沉淀APP(751)。相反,对APP(751)进行免疫沉淀可特异性共沉淀mN1、弗林蛋白酶产生的膜结合mN1 C末端片段(f.mN1-TM)或mN1-TM。APP的伦敦突变不影响APP(751)/mN1相互作用。APP(751)和mN1的共表达不影响APP的加工或mN1细胞内结构域(mNICD)的产生。APP(751)/mN1相互作用不依赖Numb,因为在缺乏可检测水平Numb的HEK293细胞中观察到了这种相互作用,并且不受外源性Numb表达或APP细胞质结构域缺失的影响,包括Numb结合的YENPTY序列。即使APP的N末端647个氨基酸被分泌性碱性磷酸酶序列取代,这种相互作用也不受影响。这些数据与显示mN1-TM和APP(751)之间相互作用的数据相结合,表明它们的跨膜结构域及其周围的短序列足以进行这种相互作用,并且APP(751)和mN1以顺式相互作用。我们的结果暗示了APP和/或N1源自它们相互作用的新功能。