Department of Biology, Boston University, Boston, Massachusetts 02215, USA.
J Neurosci. 2012 Jul 11;32(28):9613-25. doi: 10.1523/JNEUROSCI.0602-12.2012.
Mint adaptor proteins bind to the membrane-bound amyloid precursor protein (APP) and affect the production of pathogenic amyloid-β (Aβ) peptides related to Alzheimer's disease (AD). Previous studies have shown that loss of each of the three Mint proteins delays the age-dependent production of amyloid plaques in transgenic mouse models of AD. However, the cellular and molecular mechanisms underlying Mints effect on amyloid production are unclear. Because Aβ generation involves the internalization of membrane-bound APP via endosomes and Mints bind directly to the endocytic motif of APP, we proposed that Mints are involved in APP intracellular trafficking, which in turn, affects Aβ generation. Here, we show that APP endocytosis was attenuated in Mint knock-out neurons, revealing a role for Mints in APP trafficking. We also show that the endocytic APP sorting processes are regulated by Src-mediated phosphorylation of Mint2 and that internalized APP is differentially sorted between autophagic and recycling trafficking pathways. A Mint2 phosphomimetic mutant favored endocytosis of APP along the autophagic sorting pathway leading to increased intracellular Aβ accumulation. Conversely, the Mint2 phospho-resistant mutant increased APP localization to the recycling pathway and back to the cell surface thereby enhancing Aβ42 secretion. These results demonstrate that Src-mediated phosphorylation of Mint2 regulates the APP endocytic sorting pathway, providing a mechanism for regulating Aβ secretion.
Mint 衔接蛋白与膜结合淀粉样前体蛋白 (APP) 结合,并影响与阿尔茨海默病 (AD) 相关的致病淀粉样β (Aβ) 肽的产生。先前的研究表明,三种 Mint 蛋白中的每一种缺失都会延迟 AD 转基因小鼠模型中与年龄相关的淀粉样斑块的产生。然而,Mints 对淀粉样生成影响的细胞和分子机制尚不清楚。由于 Aβ 的产生涉及通过内体内化膜结合的 APP,并且 Mint 直接与 APP 的内吞基序结合,我们提出 Mint 参与 APP 的细胞内运输,进而影响 Aβ 的产生。在这里,我们表明 Mint 敲除神经元中的 APP 内吞作用减弱,揭示了 Mint 在 APP 运输中的作用。我们还表明,Src 介导的 Mint2 磷酸化调节内吞 APP 的分选过程,并且内化的 APP 在自噬和再循环运输途径之间被不同地分选。Mint2 磷酸化模拟突变体有利于 APP 沿着自噬分选途径的内吞作用,导致细胞内 Aβ 积累增加。相反,Mint2 磷酸化抗性突变体增加了 APP 向再循环途径的定位并返回细胞表面,从而增强了 Aβ42 的分泌。这些结果表明,Src 介导的 Mint2 磷酸化调节 APP 的内吞分选途径,为调节 Aβ 分泌提供了一种机制。