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首页> 外文期刊>Molecular neurodegeneration >Protein kinase C and rho activated coiled coil protein kinase 2 (ROCK2) modulate Alzheimer's APP metabolism and phosphorylation of the Vps10-domain protein, SorL1
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Protein kinase C and rho activated coiled coil protein kinase 2 (ROCK2) modulate Alzheimer's APP metabolism and phosphorylation of the Vps10-domain protein, SorL1

机译:蛋白激酶C和rho激活的卷曲螺旋蛋白激酶2(ROCK2)调节Alzheimer的APP代谢和Vps10域蛋白SorL1的磷酸化

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Background Generation of the amyloid β (Aβ) peptide of Alzheimer's disease (AD) is differentially regulated through the intracellular trafficking of the amyloid β precursor protein (APP) within the secretory and endocytic pathways. Protein kinase C (PKC) and rho-activated coiled-coil kinases (ROCKs) are two "third messenger" signaling molecules that control the relative utilization of these two pathways. Several members of the Vps family of receptors (Vps35, SorL1, SorCS1) play important roles in post-trans-Golgi network (TGN) sorting and generation of APP derivatives, including Aβ at the TGN, endosome and the plasma membrane. We now report that Vps10-domain proteins are candidate substrates for PKC and/or ROCK2 and act as phospho-state-sensitive physiological effectors for post-TGN sorting of APP and its derivatives. Results Analysis of the SorL1 cytoplasmic tail revealed multiple consensus sites for phosphorylation by protein kinases. SorL1 was subsequently identified as a phosphoprotein, based on sensitivity of its electrophoretic migration pattern to calf intestine alkaline phosphatase and on its reaction with anti-phospho-serine antibodies. Activation of PKC resulted in increased shedding of the ectodomains of both APP and SorL1, and this was paralleled by an apparent increase in the level of the phosphorylated form of SorL1. ROCK2, the neuronal isoform of another protein kinase, was found to form complexes with SorL1, and both ROCK2 inhibition and ROCK2 knockdown enhanced generation of both soluble APP and Aβ. Conclusion These results highlight the potential importance of SorL1 in elucidating phospho-state sensitive mechanisms in the regulation of metabolism of APP and Aβ by PKC and ROCK2.
机译:背景技术阿尔茨海默氏病(AD)的淀粉样β(Aβ)肽的生成通过分泌和内吞途径内的淀粉样β前体蛋白(APP)的细胞内运输而受到不同调节。蛋白激酶C(PKC)和rho-activated卷曲螺旋激酶(ROCKs)是两个“第三信使”信号分子,控制这两个途径的相对利用。 Vps受体家族的几个成员(Vps35,SorL1,SorCS1)在反高尔基体后网络(TGN)排序和APP衍生物的产生中起重要作用,包括TGN处的Aβ,内体和质膜。现在,我们报道Vps10域蛋白是PKC和/或ROCK2的候选底物,并充当磷酸化状态敏感的生理效应物,用于APP及其衍生物的TGN后分选。结果对SorL1细胞质尾巴的分析揭示了多个通过蛋白激酶磷酸化的共有位点。随后,基于SorL1的电泳迁移图谱对小牛肠碱性磷酸酶的敏感性以及与抗磷酸丝氨酸抗体的反应,SorL1被鉴定为磷蛋白。 PKC的激活导致APP和SorL1胞外域的脱落增加,这与SorL1磷酸化形式的水平明显升高同时发生。 ROCK2是另一种蛋白激酶的神经元同种型,被发现与SorL1形成复合物,ROCK2抑制和ROCK2敲低均增强了可溶性APP和Aβ的生成。结论这些结果凸显了SorL1在阐明磷状态敏感机制对PKC和ROCK2调节APP和Aβ代谢中的潜在重要性。

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