Department of Biological Sciences/Pharmacology, Medical University of South Carolina, Charleston, SC 29403, USA.
Curr Alzheimer Res. 2010 Nov;7(7):566-77. doi: 10.2174/156720510793499002.
The ATP binding cassette transporter-2 (ABCA2) has been genetically linked to Alzheimer's disease but the molecular mechanisms are unknown. In this study, the effects of expression of human ABCA2 on endogenous amyloid precursor protein (APP) expression, trafficking and processing were examined in mouse N2a neuronal cells. ABCA2 expression increased the steady-state APP mRNA levels through transcription. ABCA2 also induced increased synthesis of APP holoprotein and altered APP processing and metabolite generation. ABCA2 expression promoted b-secretase (BACE1) cleavage of APP not at the common Asp1 amino acid site (β-site) of Aβ in APP but at the Glu11 site (β'-site) to increase C89 carboxyl-terminal fragment levels (β'-CTF/C89). The levels of N-terminally truncated Aβ11-40 peptides were also increased by ABCA2 expression. The delivery of newly synthesized APP to the cell surface through the secretary pathway was not perturbed by ABCA2 expression; however, ABCA2 expression increased the amount of APP in early-endosomal compartments, which also contained the highest levels of β'-CTF/C89 and is likely the site of increased BACE1 processing of APP. This report identifies ABCA2 as a key regulator of endogenous APP expression and processing and suggests a possible biochemical mechanism linking ABCA2 expression, APP processing and Alzheimer's disease.
三磷酸腺苷结合盒转运体-2(ABCA2)已被遗传关联到阿尔茨海默病,但分子机制尚不清楚。在这项研究中,在小鼠 N2a 神经元细胞中,研究了人 ABCA2 的表达对内源性淀粉样前体蛋白(APP)表达、转运和加工的影响。ABCA2 通过转录增加了 APP mRNA 水平的稳态。ABCA2 还诱导 APP 全长蛋白的合成增加,并改变 APP 的加工和代谢产物的生成。ABCA2 的表达促进了 b-分泌酶(BACE1)对 APP 的切割,而不是 APP 中 Aβ的常见天冬氨酸 1 位(β 位),而是 Glu11 位(β'-位),以增加 C89 羧基末端片段(β'-CTF/C89)的水平。ABCA2 的表达还增加了 N 端截断的 Aβ11-40 肽的水平。通过分泌途径将新合成的 APP 递送到细胞表面不受 ABCA2 表达的干扰;然而,ABCA2 的表达增加了早期内体区室中 APP 的含量,其中也含有最高水平的β'-CTF/C89,并且可能是 BACE1 对 APP 加工增加的部位。本报告确定 ABCA2 是内源性 APP 表达和加工的关键调节因子,并提出了 ABCA2 表达、APP 加工和阿尔茨海默病之间可能的生化机制。