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早老素1在促进滞后2介导的Notch 1蛋白内切蛋白水解和信号传导中的作用

Requirement for presenilin 1 in facilitating lagged 2-mediated endoproteolysis and signaling of notch 1.

作者信息

Martys-Zage J L, Kim S H, Berechid B, Bingham S J, Chu S, Sklar J, Nye J, Sisodia S S

机构信息

Department of Neurobiology, Pharmacology, and Physiology, Howard Hughes Medical Institute, The University of Chicago, IL 60637, USA.

出版信息

J Mol Neurosci. 2000 Dec;15(3):189-204. doi: 10.1385/jmn:15:3:189.

Abstract

Presenilin 1 (PS1), a polytopic membrane protein, is required for endoproteolytic processing at gamma-secretase site within the transmembrane domain of amyloid precursor proteins (APP). In addition, PS1 and its orthologues facilitate signaling of Notch family members, cell-surface receptors that specify cell fates during development. To clarify the mechanism(s) by which PS facilitates Notch signaling, we examined human Jagged-2-dependent metabolism and activity of a chimeric full-length Notchl-GFP molecule expressed in fibroblasts with heterozygous, or homozygous deletions of PS1. We demonstrate that PS1 is required for facilitating Jagged 2-mediated proteolysis and that translocation and accumulation of NICD in the nucleus correlates with signaling activity. Moreover, in a ligand-independent, Ca2+-depletion paradigm, we demonstrate that PS1 facilitates endoproteolysis of a plasma-membrane-associated, Notch1-GFP derivative. Finally, we report that NICD production is inhibited by L-685,458, a potent and selective inhibitor that blocks solubilized gamma-secretase activity and Abeta production in cultured cells. These findings strongly suggest that intramembranous processing of APP and Notch 1 are mediated by similar, if not identical, proteases that require PS1 for their activation.

摘要

早老素1(PS1)是一种多次跨膜蛋白,它是淀粉样前体蛋白(APP)跨膜结构域内γ-分泌酶位点进行蛋白内切加工所必需的。此外,PS1及其同源物有助于Notch家族成员(在发育过程中决定细胞命运的细胞表面受体)的信号传导。为了阐明PS促进Notch信号传导的机制,我们检测了在成纤维细胞中表达的嵌合全长Notch1-GFP分子在杂合或纯合缺失PS1情况下,依赖人类Jagged-2的代谢和活性。我们证明PS1是促进Jagged 2介导的蛋白水解所必需的,并且NICD在细胞核中的转运和积累与信号活性相关。此外,在一种不依赖配体的Ca2+耗竭模式中,我们证明PS1促进了一种与质膜相关的Notch1-GFP衍生物的蛋白内切加工。最后,我们报告NICD的产生受到L-685,458的抑制,L-685,458是一种强效且选择性的抑制剂,可阻断培养细胞中可溶性γ-分泌酶活性和Aβ的产生。这些发现强烈表明APP和Notch 1的膜内加工是由相似(如果不是相同)的蛋白酶介导的,这些蛋白酶需要PS1来激活。

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