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证据表明,酶的连续性介导了 PS1 和 PS2 对 Aβ 产生的差异。

Evidence that enzyme processivity mediates differential Aβ production by PS1 and PS2.

机构信息

Elan Pharmaceuticals, Inc., 180 Oyster Pt. Blvd., South San Francisco, CA 94080, USA.

出版信息

Curr Alzheimer Res. 2013 Jan;10(1):4-10. doi: 10.2174/156720513804871480.

Abstract

The γ-secretase complex cleaves the carboxy-terminal 99 residue (C99) fragment of the amyloid precursor protein (APP) to generate the amyloid-β (Aβ) peptide. The catalytic activity of this complex is mediated either by the presenilin- 1 (PS1) or the presenilin-2 (PS2) subunit. In vitro and in vivo studies have demonstrated that PS1-containing complexes generate more total Aβ product than PS2-containing complexes, indicating greater cleavage activity by PS1- containing γ-secretase complexes at the APP γ-site. However, it remains untested whether γ-secretase cleavage at the APP -site, which precedes γ-site cleavage and produces the physiologically active APP intracellular domain (AICD), follows the same rule. Using a novel Swedish APP-GVP substrate to facilitate the parallel detection of Aβ and AICD products from PS1-/-/PS2-/- cells co-transfected with either PS1 or PS2, we observed that while PS1 generates more total Aβ product than PS2, consistent with published reports, PS1 and PS2 unexpectedly generate equal amounts of AICD product. We also observed that PS1 and PS2 produce equivalent amounts of Notch intracellular domain (NICD), indicating equal cleavage activity at the Notch S3-site (the corollary of the APP -site). Our findings suggest that processivity differences between PS1 and PS2 underlie the differential production of Aβ peptide. Taken together these findings offer novel insights into γ- secretase biology and have important implications for therapeutically targeting γ-secretase.

摘要

γ-分泌酶复合物将淀粉样前体蛋白(APP)的羧基末端 99 个残基(C99)片段切割,生成淀粉样β(Aβ)肽。该复合物的催化活性由早老素-1(PS1)或早老素-2(PS2)亚基介导。体外和体内研究表明,含有 PS1 的复合物产生的总 Aβ产物多于含有 PS2 的复合物,表明含有 PS1 的 γ-分泌酶复合物在 APP γ-位点的切割活性更高。然而,尚未测试 APP -位点的 γ-分泌酶切割是否遵循相同的规则,APP -位点的切割先于 γ-位点的切割,并产生生理活性的 APP 细胞内域(AICD)。使用一种新型的瑞典 APP-GVP 底物,可促进从 PS1-/-/PS2-/-细胞共转染 PS1 或 PS2 中平行检测 Aβ和 AICD 产物,我们观察到 PS1 产生的总 Aβ产物多于 PS2,这与已发表的报道一致,但 PS1 和 PS2 出人意料地产生等量的 AICD 产物。我们还观察到 PS1 和 PS2 产生等量的 Notch 细胞内域(NICD),表明 Notch S3 位点(APP -位点的推论)的切割活性相等。我们的发现表明 PS1 和 PS2 之间的连续性差异是 Aβ肽产生差异的基础。这些发现共同为 γ-分泌酶生物学提供了新的见解,并对靶向 γ-分泌酶的治疗具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6ca7/3617584/341fd611d20e/CAR-10-4_F1.jpg

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