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Quantitative analysis of APP axonal transport in neurons:role of JIP1 in enhanced APP anterograde transport

机译:定量分析神经元中APP轴突的运输:JIP1在增强APP顺行运输中的作用

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Alzheimer's β-amyloid precursor protein (APP) associates with kinesin-1 via JNK-interacting protein 1 (JIP1); however, the role of JIP1 in APP transport by kinesin-1 in neurons remains unclear. We performed a quantitative analysis to understand the role of JIP1 in APP axonal transport. In JIP1-deficient neurons, we find that both the fast velocity (~2.7 μm/s) and high frequency (66%) of anterograde transport of APP cargo are impaired to a reduced velocity (~1.83 μm/s) and a lower frequency (45%). We identified two novel elements linked to JIP1 function, located in the central region of JIP1b, that interact with the coiled-coil domain of kinesin light chain 1 (KLC1), in addition to the conventional interaction of the JIP1b 11-amino acid C-terminal (C11) region with the tetratricopeptide repeat of KLC1. High frequency of APP anterograde transport is dependent on one of the novel elements in JIP1b. Fast velocity of APP cargo transport requires the C11 domain, which is regulated by the second novel region of JIP1b. Furthermore, efficient APP axonal transport is not influenced by phosphorylation of APP at Thr-668, a site known to be phosphorylated by JNK. Our quantitative analysis indicates that enhanced fast-velocity and efficient high-frequency APP anterograde transport observed in neurons are mediated by novel roles of JIP1b.
机译:阿尔茨海默氏症的β-淀粉样蛋白前体蛋白(APP)通过JNK相互作用蛋白1(JIP1)与kinesin-1结合。然而,JIP1在神经元驱动蛋白1的APP转运中的作用仍不清楚。我们进行了定量分析,以了解JIP1在APP轴突运输中的作用。在缺乏JIP1的神经元中,我们发现APP货物顺向运输的快速速度(〜2.7μm/ s)和高频(66%)均受损害,从而降低了速度(〜1.83μm/ s)和较低的频率(45%)。我们确定了两个与JIP1功能相关的新颖元素,它们位于JIP1b的中央区域,除了JIP1b 11个氨基酸C-的常规相互作用外,还与驱动蛋白轻链1(KLC1)的卷曲螺旋结构域相互作用。末端(C11)区域带有KLC1的四三肽重复序列。 APP顺行转运的高频率取决于JIP1b中的新颖元素之一。 APP货物运输的快速速度需要C11域,该域受JIP1b的第二个新颖区域调控。此外,有效的APP轴突运输不受Thr-668处APP的磷酸化影响,Thr-668是一个已知被JNK磷酸化的位点。我们的定量分析表明,在神经元中观察到的增强的快速和高效的高频APP顺行转运是由JIP1b的新作用介导的。

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