Shah Sanjiv, Lee Sheu-Fen, Tabuchi Katsuhiko, Hao Yi-Heng, Yu Cong, LaPlant Quincey, Ball Haydn, Dann Charles E, Südhof Thomas, Yu Gang
Center for Basic Neuroscience, The University of Texas Southwestern Medical Center, Dallas, Texas 75390, USA.
Cell. 2005 Aug 12;122(3):435-47. doi: 10.1016/j.cell.2005.05.022.
gamma-secretase catalyzes the intramembrane cleavage of amyloid precursor protein (APP) and Notch after their extracellular domains are shed by site-specific proteolysis. Nicastrin is an essential glycoprotein component of the gamma-secretase complex but has no known function. We now show that the ectodomain of nicastrin binds the new amino terminus that is generated upon proteolysis of the extracellular APP and Notch domains, thereby recruiting the APP and Notch substrates into the gamma-secretase complex. Chemical- or antibody-mediated blocking of the free amino terminus, addition of purified nicastrin ectodomain, or mutations in the ectodomain markedly reduce the binding and cleavage of substrate by gamma-secretase. These results indicate that nicastrin is a receptor for the amino-terminal stubs that are generated by ectodomain shedding of type I transmembrane proteins. Our data are consistent with a model where nicastrin presents these substrates to gamma-secretase and thereby facilitates their cleavage via intramembrane proteolysis.
γ-分泌酶催化淀粉样前体蛋白(APP)和Notch的胞内结构域裂解,此前它们的胞外结构域已通过位点特异性蛋白水解作用脱落。尼卡斯特林是γ-分泌酶复合物的一种必需糖蛋白成分,但目前尚无已知功能。我们现在表明,尼卡斯特林的胞外结构域结合在APP和Notch胞外结构域蛋白水解后产生的新氨基末端,从而将APP和Notch底物招募到γ-分泌酶复合物中。化学或抗体介导的游离氨基末端阻断、添加纯化的尼卡斯特林胞外结构域或胞外结构域中的突变均显著降低γ-分泌酶对底物的结合和裂解。这些结果表明,尼卡斯特林是I型跨膜蛋白胞外结构域脱落产生的氨基末端残基的受体。我们的数据与一个模型一致,即尼卡斯特林将这些底物呈递给γ-分泌酶,从而通过胞内蛋白水解促进它们的裂解。