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首页> 外文期刊>Cellular and Molecular Neurobiology >γ-Secretase-Regulated Mechanisms Similar to Notch Signaling May Play a Role in Signaling Events, Including APP Signaling, Which Leads to Alzheimer’s Disease
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γ-Secretase-Regulated Mechanisms Similar to Notch Signaling May Play a Role in Signaling Events, Including APP Signaling, Which Leads to Alzheimer’s Disease

机译:γ分泌酶调节的机制类似于Notch信号传导可能在信号传导事件中起作用,包括导致Alzheimer病的APP信号传导

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Although γ-secretase was first identified as a protease that cleaves amyloid precursor protein (APP) within the transmembrane domain, thus producing Aβ peptides that are thought to be pathogenic in Alzheimer’s disease (AD), its physiological functions have not been fully elucidated. In the canonical Notch signaling pathway, intramembrane cleavage by γ-secretase serves to release an intracellular domain of Notch that shows activity in the nucleus through binding to transcription factors. Many type 1 transmembrane proteins, including Notch, Delta, and APP, have recently been shown to be substrates for γ-secretase, and their intracellular domains are released from the cell membrane following cleavage by γ-secretase. The common enzyme γ-secretase modulates proteolysis and the turnover of possible signaling molecules, which has led to the attractive hypothesis that mechanisms similar to Notch signaling contribute widely to proteolysis-regulated signaling pathways. APP is also likely to have a signaling mechanism, although the physiological functions of APP have not been elucidated. Indeed, we have shown that the intracellular domain of APP alters gene expression and induces neuron-specific apoptosis. These results suggest that APP signaling responds to the onset of AD. Here, we review the possibility of γ-secretase-regulated signaling, including APP signaling, which leads to AD.
机译:尽管最初将γ-分泌酶鉴定为能在跨膜结构域内裂解淀粉样蛋白前体蛋白(APP)的蛋白酶,从而产生被认为在阿尔茨海默氏病(AD)中致病的Aβ肽,但其生理功能尚未得到充分阐明。在典型的Notch信号通路中,γ-分泌酶对膜的内切作用可释放Notch的细胞内结构域,该结构域通过与转录因子结合而在细胞核中显示出活性。最近,许多1型跨膜蛋白(包括Notch,Delta和APP)被证明是γ-分泌酶的底物,它们的胞内域在被γ-分泌酶切割后从细胞膜释放出来。常见的酶γ-分泌酶调节蛋白水解和可能的信号分子的更新,这导致了一个令人信服的假说,即类似于Notch信号的机制在蛋白水解调节的信号通路中起很大作用。尽管尚未阐明APP的生理功能,但APP也可能具有信号传导机制。实际上,我们已经表明APP的胞内结构域改变基因表达并诱导神经元特异性凋亡。这些结果表明APP信号传导对AD的发作有反应。在这里,我们回顾了γ-分泌酶调节的信号传导(包括APP信号传导)导致AD的可能性。

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