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首页> 外文期刊>Nature Communications >Complex formation of APP with GABAB receptors links axonal trafficking to amyloidogenic processing
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Complex formation of APP with GABAB receptors links axonal trafficking to amyloidogenic processing

机译:具有GABAB受体的APP的复杂形成将轴突运输与淀粉样生成过程联系起来

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receptors (GBRs) are key regulators of synaptic release but little is known about trafficking mechanisms that control their presynaptic abundance. We now show that sequence-related epitopes in APP, AJAP-1 and PIANP bind with nanomolar affinities to the N-terminal sushi-domain of presynaptic GBRs. Of the three interacting proteins, selectively the genetic loss of APP impaired GBR-mediated presynaptic inhibition and axonal GBR expression. Proteomic and functional analyses revealed that APP associates with JIP and calsyntenin proteins that link the APP/GBR complex in cargo vesicles to the axonal trafficking motor. Complex formation with GBRs stabilizes APP at the cell surface and reduces proteolysis of APP to Aβ, a component of senile plaques in Alzheimer's disease patients. Thus, APP/GBR complex formation links presynaptic GBR trafficking to Aβ formation. Our findings support that dysfunctional axonal trafficking and reduced GBR expression in Alzheimer's disease increases Aβ formation.
机译:受体(GBRs)是突触释放的关键调节因子,但对控制其突触前丰度的运输机制知之甚少。现在,我们显示APP,AJAP-1和PIANP中与序列相关的表位与纳摩尔亲和力结合到突触前GBR的N端寿司结构域。在这三种相互作用的蛋白质中,APP的遗传损失选择性地损害了GBR介导的突触前抑制和轴突GBR表达。蛋白质组学和功能分析表明,APP与JIP和Calsyntenin蛋白质相关联,后者将货物囊泡中的APP / GBR复合物与轴突运输运动联系起来。与GBR形成的复合物可将APP稳定在细胞表面,并减少APP水解为Aβ(Azheimer's病患者的老年斑成分)。因此,APP / GBR复合物的形成将突触前GBR转运与Aβ形成联系起来。我们的发现支持阿尔茨海默氏病中轴突运输异常和GBR表达降低会增加Aβ的形成。

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