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Processing of Notch and amyloid precursor protein by γ-secretase is spatially distinct

机译:γ-分泌酶对Notch和淀粉样蛋白前体蛋白的加工在空间上是不同的

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摘要

γ-Secretase activity is associated with a presenilin (PS)-containing macromolecular complex. Whether PS contains the active site of γ-secretase has been controversial. One challenge is to find PS that is engaged in the active γ-secretase complex at the cell surface, where some substrates appear to be processed. In this study, we developed an intact cell photolabeling technique that allows the direct visualization of active γ-secretase at the cell surface. We demonstrated that active γ-secretase is present in the plasma membrane. Moreover, the PS1 heterodimer is specifically photo-labeled at the cell surface by a potent inhibitor that binds to only the active γ-secretase. We also explored the cellular processing sites of γ-secretase for amyloid precursor protein (APP) and Notch by using small molecular probes. MRL631, a γ-secretase inhibitor that is unable to penetrate the cell membrane, significantly blocks γ-secretase-mediated Notch cleavage but has little effect on APP processing. These results indicate that Notch is processed at the cell surface and that the majority of APP is processed by intracellular γ-secretase. Furthermore, the fact that inhibitors first target γ-secretase in the plasma membrane for Notch processing, and not for APP, will have important implications for drug development to treat Alzheimer's disease and cancer.
机译:γ-分泌酶活性与含早老素(PS)的高分子复合物有关。 PS是否包含γ-分泌酶的活性位点一直存在争议。一个挑战是找到与细胞表面活性γ-分泌酶复合物结合的PS,其中某些底物似乎已被处理。在这项研究中,我们开发了一种完整的细胞光标记技术,该技术可以在细胞表面直接观察到活性γ分泌酶。我们证明了活性γ-分泌酶存在于质膜中。而且,PS1异二聚体通过仅与活性γ-分泌酶结合的强效抑制剂在细胞表面进行了特异性光标记。我们还使用小分子探针探索了淀粉样前体蛋白(APP)和Notch的γ-分泌酶的细胞加工位点。 MRL631是一种无法穿透细胞膜的γ分泌酶抑制剂,可显着阻断γ分泌酶介导的Notch裂解,但对APP加工的影响很小。这些结果表明,Notch在细胞表面被加工,大多数APP被细胞内γ-分泌酶加工。此外,抑制剂首先在细胞膜上靶向Notch加工而不是APP的γ-分泌酶这一事实,对治疗阿尔茨海默氏病和癌症的药物开发具有重要意义。

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