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SAP97-mediated ADAM10 trafficking from Golgi outposts depends on PKC phosphorylation

机译:SAP97介导的从高尔基哨站贩运的ADAM10取决于PKC磷酸化

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A disintegrin and metalloproteinase 10 (ADAM10) is the major α -secretase that catalyzes the amyloid precursor protein (APP) ectodomain shedding in the brain and prevents amyloid formation. Its activity depends on correct intracellular trafficking and on synaptic membrane insertion. Here, we describe that in hippocampal neurons the synapse-associated protein-97 (SAP97), an excitatory synapse scaffolding element, governs ADAM10 trafficking from dendritic Golgi outposts to synaptic membranes. This process is mediated by a previously uncharacterized protein kinase C phosphosite in SAP97 SRC homology 3 domain that modulates SAP97 association with ADAM10. Such mechanism is essential for ADAM10 trafficking from the Golgi outposts to the synapse, but does not affect ADAM10 transport from the endoplasmic reticulum. Notably, this process is altered in Alzheimer's disease brains. These results help in understanding the mechanism responsible for the modulation of ADAM10 intracellular path, and can constitute an innovative therapeutic strategy to finely tune ADAM10 shedding activity towards APP.
机译:Disintegrin和金属蛋白酶10(ADAM10)是主要的α-分泌酶,可催化大脑中淀粉样前体蛋白(APP)胞外域脱落并防止淀粉样蛋白形成。其活性取决于正确的细胞内运输和突触膜插入。在这里,我们描述了在海马神经元中,突触相关蛋白97(SAP97),一种兴奋性突触支架元件,控制ADAM10从树突状高尔基体到突触膜的运输。此过程由SAP97 SRC同源性3域中以前未表征的蛋白激酶C磷酸位点介导,该位点调节SAP97与ADAM10的缔合。这种机制对于从高尔基前哨到突触的ADAM10转运至关重要,但不会影响从内质网转运ADAM10。值得注意的是,该过程在阿尔茨海默氏病大脑中发生了变化。这些结果有助于理解负责调节ADAM10细胞内路径的机制,并且可以构成一种创新的治疗策略,以微调ADAM10对APP的脱落活性。

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