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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Presenilin 1 facilitates the constitutive turnover of beta-catenin: differential activity of Alzheimer's disease-linked PS1 mutants in the beta-catenin-signaling pathway.
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Presenilin 1 facilitates the constitutive turnover of beta-catenin: differential activity of Alzheimer's disease-linked PS1 mutants in the beta-catenin-signaling pathway.

机译:早老素1促进了β-catenin的组成型转换:阿尔茨海默氏病相关的PS1突变体在β-catenin信号通路中的差异活性。

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摘要

Although an association between the product of the familial Alzheimer's disease (FAD) gene, presenilin 1 (PS1), and beta-catenin has been reported recently, the cellular consequences of this interaction are unknown. Here, we show that both the full length and the C-terminal fragment of wild-type or FAD mutant PS1 interact with beta-catenin from transfected cells and brains of transgenic mice, whereas E-cadherin and adenomatous polyposis coli (APC) are not detected in this complex. Inducible overexpression of PS1 led to increased association of beta-catenin with glycogen synthase kinase-3beta (GSK-3beta), a negative regulator of beta-catenin, and accelerated the turnover of endogenous beta-catenin. In support of this finding, the beta-catenin half-life was dramatically longer in fibroblasts deficient in PS1, and this phenotype was completely rescued by replacement of PS1, demonstrating that PS1 normally stimulates the degradation of beta-catenin. In contrast, overexpression of FAD-linked PS1 mutants (M146L and DeltaX9) failed to enhance the association between GSK-3beta and beta-catenin and interfered with the constitutive turnover of beta-catenin. In vivo confirmation was demonstrated in the brains of transgenic mice in which the expression of the M146L mutant PS1 was correlated with increased steady-state levels of endogenous beta-catenin. Thus, our results indicate that PS1 normally promotes the turnover of beta-catenin, whereas PS1 mutants partially interfere with this process, possibly by failing to recruit GSK-3beta into the PS1-beta-catenin complex. These findings raise the intriguing possibility that PS1-beta-catenin interactions and subsequent activities may be consequential for the pathogenesis of AD.
机译:尽管最近已经报道了家族性阿尔茨海默氏病(FAD)基因,早老素1(PS1)和β-连环蛋白之间的关联,但这种相互作用的细胞后果尚不清楚。在这里,我们显示野生型或FAD突变体PS1的全长和C末端片段都与转基因小鼠的转染细胞和大脑中的β-catenin相互作用,而E-钙粘蛋白和腺瘤性息肉病(APC)则不在这种复合物中检测到。 PS1的诱导过度表达导致β-catenin与糖原合酶激酶3beta(GSK-3beta)(β-catenin的负调节剂)之间的缔合增加,并加速了内源性β-catenin的更新。为了支持这一发现,在缺乏PS1的成纤维细胞中,β-catenin的半衰期显着延长,并且通过替换PS1完全挽救了这种表型,表明PS1正常地刺激了β-catenin的降解。相比之下,FAD连接的PS1突变体(M146L和DeltaX9)的过表达不能增强GSK-3beta和β-catenin之间的结合,并干扰了β-catenin的组成型转换。在转基因小鼠的大脑中证实了体内确认,其中M146L突变体PS1的表达与内源性β-catenin的稳态水平升高相关。因此,我们的结果表明PS1正常地促进了β-catenin的更新,而PS1突变体部分地干扰了这一过程,可能是因为未能将GSK-3beta募集到PS1-beta-catenin复合物中。这些发现增加了PS1-β-catenin的相互作用和随后的活动可能是AD发病的必然原因。

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