生物
细胞生物学
信号转导衔接蛋白
核蛋白
染色质
胞浆
效应器
淀粉样前体蛋白
核出口信号
核运输
细胞核
核心
信号转导
转录因子
生物化学
基因
酶
医学
病理
阿尔茨海默病
疾病
作者
Ruth C. von Rotz,Bernhard M. Kohli,Jérôme Bosset,Michelle G. Meier,Toshiharu Suzuki,Roger M. Nitsch,Uwe Konietzko
摘要
The physiological functions of the beta-amyloid precursor protein (APP) may include nuclear signaling. To characterize the role of the APP adaptor proteins Fe65, Jip1b, X11α (MINT1) and the chromatin-associated protein Tip60, we analyzed their interactions by confocal microscopy and co-immunoprecipitations. AICD corresponding to S3-cleaved APP bound to Fe65 that transported it to nuclei and docked it to Tip60. These proteins formed AICD-Fe65-Tip60 (AFT) complexes that were concentrated in spherical nuclear spots. γ-Secretase inhibitors prevented AFT-complex formation with AICD derived from full-length APP. The APP adaptor protein Jip1b also transported AICD to nuclei and docked it to Tip60, but AICD-Jip1b-Tip60 (AJT) complexes had different, speckle-like morphology. By contrast, X11α trapped AICD in the cytosol. Induced AICD expression identified the APP-effector genes APP, BACE, Tip60, GSK3β and KAI1, but not the Notch-effector gene Hes1 as transcriptional targets. These data establish a role for APP in nuclear signaling, and they suggest that therapeutic strategies designed to modulate the cleavage of APP affect AICD-dependent signaling.
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