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Membrane tethering of APP c-terminal fragments is a prerequisite for T668 phosphorylation preventing nuclear sphere generation

机译:APP c端片段的膜系留是T668磷酸化防止核球生成的先决条件

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摘要

A central molecular hallmark of Alzheimer's disease (AD) is the beta- and gamma-secretase-mediated cleavage of the amyloid precursor protein (APP), which causes the generation of different c-terminal fragments like C99, AICD57, or AICD50 that fully or in part contain the APP transmembrane domain. In this study, we demonstrate that membrane-tethered C99 is phosphorylated by JNK3A at residue T668 (APP695 numbering) to a higher extent than AICD57, whereas AICD50 is not capable of being phosphorylated. The modification decreases the turnover of APP, while the blockade of APP cleavage increases APP phosphorylation. Generation of nuclear spheres, complexes consisting of the translocated AICD, FE65 and other proteins, is significantly reduced as soon as APP c-terminal fragments are accessible for phosphorylation. This APP modification, which we identified as significantly reduced in high plaque-load areas of the human brain, is linearly dependent on the level of APP expression. Accordingly, we show that APP abundance is likewise capable of modulating nuclear sphere generation. Thus, the precise and complex regulation of APP phosphorylation, abundance, and cleavage impacts the generation of nuclear spheres, which are under discussion of being of relevance in neurodegeneration and dementia. Future pharmacological manipulation of nuclear sphere generation may be a promising approach for AD treatment. (C) 2016 Elsevier Inc. All rights reserved.
机译:阿尔茨海默氏病(AD)的中心分子标志是淀粉样前体蛋白(APP)的β和γ分泌酶介导的裂解,这导致生成不同的c末端片段,例如C99,AICD57或AICD50,这些片段可以完全或部分包含APP跨膜结构域。在这项研究中,我们证明膜连接的C99在残基T668(APP695编号)处被JNK3A磷酸化的程度高于AICD57,而AICD50无法被磷酸化。修饰降低了APP的周转率,而对APP裂解的阻断增加了APP的磷酸化。一旦APP c-末端片段可用于磷酸化,核球的生成即由易位的AICD,FE65和其他蛋白质组成的复合物就会大大减少。我们确定该APP修饰在人脑高噬斑量区域显着减少,它线性依赖于APP表达水平。因此,我们表明APP丰度同样能够调节核球的产生。因此,APP磷酸化,丰度和裂解的精确而复杂的调节会影响核球的生成,而核球在神经变性和痴呆中的相关性正在讨论中。核球生成的未来药理学操纵可能是AD治疗的有前途的方法。 (C)2016 Elsevier Inc.保留所有权利。

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