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尼卡斯特林的过表达会增加β淀粉样蛋白的产生。

Overexpression of nicastrin increases Abeta production.

作者信息

Murphy M Paul, Das Pritam, Nyborg Andrew C, Rochette Marjorie J, Dodson Mark W, Loosbrock Nicole M, Souder Terrance M, McLendon Chris, Merit Sami L, Piper Siân C, Jansen Karen R, Golde Todd E

机构信息

Mayo Clinic Jacksonville, Laboratory of Molecular Neurobiology, Department of Neuroscience, 4500 San Pablo Rd, Jacksonville, Florida 32224, USA.

出版信息

FASEB J. 2003 Jun;17(9):1138-40. doi: 10.1096/fj.02-1050fje. Epub 2003 Apr 8.

Abstract

Gamma-secretase cleavage is the final proteolytic step that releases the amyloid beta-peptide (Abeta) from the amyloid beta-protein precursor (APP). Significant evidence indicates that the presenilins (PS) are catalytic components of a high molecular weight gamma-secretase complex. The glycoprotein nicastrin was recently identified as a functional unit of this complex based on 1) binding to PS and 2) the ability to modulate Abeta production following mutation of a conserved DYIGS region. In contrast to the initial report, we find that overexpression of wild-type (WT) nicastrin increases Abeta production, whereas DYIGS mutations (MT) have little or no effect. The increase in Abeta production is associated with an increase in gamma-secretase activity but not with a detectable increase in PS1 levels. Subcellular fractionation studies show that WT but not MT nicastrin matures into buoyant membrane fractions enriched in gamma-secretase activity. These data support the hypothesis that nicastrin is an essential component of the gamma-secretase complex. The finding that WT nicastrin overexpression can increase gamma-secretase activity without altering levels of the presumed catalytic component (PS) of the enzyme may point to a role for nicastrin in facilitating cleavage by regulating substrate interactions with the gamma-secretase complex.

摘要

γ-分泌酶切割是从淀粉样前体蛋白(APP)释放淀粉样β肽(Aβ)的最后蛋白水解步骤。大量证据表明,早老素(PS)是高分子量γ-分泌酶复合物的催化成分。糖蛋白尼卡斯特林最近被确定为该复合物的功能单位,依据是:1)与PS结合;2)在保守的DYIGS区域发生突变后具有调节Aβ产生的能力。与最初的报告相反,我们发现野生型(WT)尼卡斯特林的过表达会增加Aβ的产生,而DYIGS突变(MT)几乎没有影响。Aβ产生的增加与γ-分泌酶活性的增加相关,但与PS1水平的可检测增加无关。亚细胞分级分离研究表明,WT而非MT尼卡斯特林成熟为富含γ-分泌酶活性的漂浮膜组分。这些数据支持尼卡斯特林是γ-分泌酶复合物必需成分的假说。野生型尼卡斯特林过表达可增加γ-分泌酶活性而不改变该酶假定催化成分(PS)的水平,这一发现可能表明尼卡斯特林在通过调节底物与γ-分泌酶复合物的相互作用促进切割方面发挥作用。

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