Brain Behav. 2012 May;2(3):270-82. doi: 10.1002/brb3.52.
β-Secretase, BACE1 is a neuron-specific membrane-associated protease that cleaves amyloid precursor protein (APP) to generate β-amyloid protein (Aβ). BACE1 is partially localized in lipid rafts. We investigated whether lipid raft localization of BACE1 affects Aβ production in neurons using a palmitoylation-deficient mutant and further analyzed the relationship between palmitoylation of BACE1 and its shedding and dimerization. We initially confirmed that BACE1 is mainly palmitoylated at four C-terminal cysteine residues in stably transfected neuroblastoma cells. We found that raft localization of mutant BACE1 lacking the palmitoylation modification was markedly reduced in comparison to wild-type BACE1 in neuroblastoma cells as well as rat primary cortical neurons expressing BACE1 via recombinant adenoviruses. In primary neurons, expression of wild-type and mutant BACE1 enhanced production of Aβ from endogenous or overexpressed APP to similar extents with the β-C-terminal fragment (β-CTF) of APP mainly distributed in nonraft fractions. Similarly, β-CTF was recovered mainly in nonraft fractions of neurons expressing Swedish mutant APP only. These results show that raft association of BACE1 does not influence β-cleavage of APP and Aβ production in neurons, and support the view that BACE1 cleaves APP mainly in nonraft domains. Thus, we propose a model of neuronal Aβ generation involving mobilization of β-CTF from nonraft to raft domains. Additionally, we obtained data indicating that palmitoylation plays a role in BACE1 shedding but not dimerization.
β-分泌酶,BACE1 是一种神经元特异性的膜相关蛋白酶,可切割淀粉样前体蛋白 (APP) 以生成 β-淀粉样蛋白 (Aβ)。BACE1 部分定位于脂筏中。我们使用棕榈酰化缺陷突变体研究了 BACE1 的脂筏定位是否会影响神经元中的 Aβ 产生,并进一步分析了 BACE1 的棕榈酰化与其脱落和二聚化之间的关系。我们最初证实 BACE1 主要在稳定转染的神经母细胞瘤细胞中的四个 C 末端半胱氨酸残基上发生棕榈酰化。我们发现与野生型 BACE1 相比,突变体 BACE1 缺失棕榈酰化修饰后的脂筏定位在神经母细胞瘤细胞以及通过重组腺病毒表达 BACE1 的大鼠原代皮质神经元中明显减少。在原代神经元中,野生型和突变型 BACE1 的表达以相似的程度增强了内源性或过表达 APP 的 Aβ 产生,APP 的β-羧基末端片段(β-CTF)主要分布在非脂筏部分。同样,仅表达瑞典突变型 APP 的神经元中 β-CTF 主要回收至非脂筏部分。这些结果表明 BACE1 与脂筏的关联并不影响神经元中 APP 的β-切割和 Aβ 产生,并支持 BACE1 主要在非脂筏区域切割 APP 的观点。因此,我们提出了一个涉及β-CTF 从非脂筏到脂筏区域的动员的神经元 Aβ 生成模型。此外,我们获得的数据表明棕榈酰化在 BACE1 脱落中起作用,但不在二聚化中起作用。