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Amyloidogenic Processing but not AICD Production Requires a Precisely Oriented APP Dimer Assembled by Transmembrane GXXXG Motifs

机译:淀粉样蛋白加工而不是AICD生产需要由跨膜GXXXG母模组装的精确定向的APP二聚体。

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摘要

The β-amyloid peptide (Aβ) is the major constituent of the amyloid core of senile plaques found in the brain of patients with Alzheimer's disease (AD). Aβ is produced by the sequential cleavage of the Amyloid Precursor Protein (APP) by β- and γ-secretases. Cleavage of APP by γ-secretase also generates the APP Intracellular C-terminal Domain (AICD) peptide, which might be involved in regulation of gene transcription. APP contains three glycine-xxx-glycine (GxxxG) motifs in its juxtamembrane and transmembrane (TM) regions. Such motifs are known to promote dimerization via close apposition of TM sequences. We demonstrate that pairwise replacement of glycines by leucines or isoleucines, but not alanines, in a GxxxG motif led to a drastic reduction of Aβ40 and Aβ42 secretion. β-Cleavage of mutant APP was not inhibited, and reduction of Aβ secretion resulted from inhibition of γ-cleavage. It was anticipated that decreased γ-cleavage of mutant APP would result from inhibition of its dimerization. Surprisingly, mutations of the GxxxG motif actually enhanced dimerization of the APP C-terminal fragments, possibly via a different TM α-helical interface. Increased dimerization of the TM APP C-terminal domain did not affect AICD production. These results clearly demonstrate that both orientation and dimerization of the APP TM domain differently affect Aβ and AICD production.
机译:β淀粉样肽(Aβ)是老年痴呆症(AD)患者大脑中发现的老年斑淀粉样蛋白核心的主要成分。 Aβ是由β-和γ-分泌酶顺序切割淀粉样前体蛋白(APP)产生的。 γ-分泌酶切割APP也可产生APP细胞内C端结构域(AICD)肽,该肽可能参与基因转录的调控。 APP的近膜和跨膜(TM)区域包含三个甘氨酸-xxx-甘氨酸(GxxxG)基序。已知此类基序可通过紧密并置TM序列来促进二聚化。我们证明在GxxxG基序中由亮氨酸或异亮氨酸而不是丙氨酸成对替换甘氨酸导致Aβ40和Aβ42分泌的急剧减少。突变体APP的β-切割不被抑制,并且γ-切割的抑制导致Aβ分泌的减少。预期突变体APP的γ切割减少将由其二聚化的抑制引起。令人惊讶地,GxxxG基序的突变实际上可能通过不同的TMα-螺旋界面增强了APP C-末端片段的二聚化。 TM APP C-末端结构域的二聚化增加不影响AICD产生。这些结果清楚地表明APP TM结构域的取向和二聚化均不同地影响Aβ和AICD的产生。

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