Ray W J, Yao M, Nowotny P, Mumm J, Zhang W, Wu J Y, Kopan R, Goate A M
Department of Psychiatry, Washington University School of Medicine, 4940 Children's Place, St. Louis, MO 63110, USA.
Proc Natl Acad Sci U S A. 1999 Mar 16;96(6):3263-8. doi: 10.1073/pnas.96.6.3263.
Genetic analyses in Caenorhabditis elegans demonstrate that sel-12 and hop-1, homologues of the Alzheimer's disease-associated presenilin genes, modify signaling through LIN-12 and GLP-1, homologues of the Notch cell surface receptor. To gain insight into the biochemical basis of this genetic interaction, we tested the possibility that presenilin-1 (PS1) physically associates with the Notch1 receptor in mammalian cells. Notch1 and PS1 coimmunoprecipitated from transiently transfected human embryonic kidney 293 cell lysates in a detergent-sensitive manner, consistent with a noncovalent physical association between the two proteins. The interaction predominantly occurred early in the secretory pathway prior to Notch cleavage in the Golgi, because PS1 immunoprecipitation preferentially recovered the full-length Notch1 precursor. When PS1 was immunoprecipitated from 293 cells that had been metabolically labeled with [35S]methionine and [35S]cysteine, Notch1 was the primary protein detected in PS1 immunoprecipitates, suggesting that this interaction is specific. Furthermore, endogenous Notch and presenilin coimmunoprecipitated from cultured Drosophila cells, indicating that physical interaction can occur at physiological expression levels. These results suggest that the genetic relationship between presenilins and the Notch signaling pathway derives from a direct physical association between these proteins in the secretory pathway.
秀丽隐杆线虫中的遗传分析表明,与阿尔茨海默病相关的早老素基因的同源物sel - 12和hop - 1,可通过Notch细胞表面受体的同源物LIN - 12和GLP - 1来调节信号传导。为了深入了解这种遗传相互作用的生化基础,我们测试了早老素 - 1(PS1)在哺乳动物细胞中与Notch1受体发生物理结合的可能性。Notch1和PS1以一种对去污剂敏感的方式从瞬时转染的人胚肾293细胞裂解物中共免疫沉淀,这与两种蛋白质之间的非共价物理结合一致。这种相互作用主要发生在高尔基体中Notch裂解之前的分泌途径早期,因为PS1免疫沉淀优先回收全长Notch1前体。当从用[35S]甲硫氨酸和[35S]半胱氨酸进行代谢标记的293细胞中免疫沉淀PS1时,Notch1是在PS1免疫沉淀物中检测到的主要蛋白质,表明这种相互作用是特异性的。此外,内源性Notch和早老素从培养的果蝇细胞中共免疫沉淀,表明在生理表达水平上可以发生物理相互作用。这些结果表明,早老素与Notch信号通路之间的遗传关系源于这些蛋白质在分泌途径中的直接物理结合。