在小鼠模型中,增加人类野生型Tau可减弱APP缺失引起的轴突运输缺陷。

Karen D B Smith, Erica Peethumnongsin, Han Lin, Hui Zheng, Robia G Pautler
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引用次数: 28

摘要

淀粉样前体蛋白(APP)与轴突伸长、突触可塑性和轴突运输有关。然而,APP与微管相关蛋白tau在轴突运输中的作用仍存在争议。在这里,我们用锰增强MRI (MEMRI)测量APP敲除小鼠体内轴突运输,以确定APP是否对维持正常轴突运输是必要的。我们还测试了在APP存在或不存在的情况下,tau的过表达和突变如何影响轴突运输。在没有功能性APP的情况下,体内轴突运输显著减少。人类野生型tau的过表达维持了正常的轴突运输,并在APP缺失的情况下对轴突运输缺陷进行了短暂的补偿。突变体R406Wtau与APP缺失结合,复合了轴突运输缺陷,这些缺陷随着年龄的增长而持续存在。这些结果表明APP是轴突运输所必需的,人类野生型tau的过表达可以弥补早期APP的缺失。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Increased Human Wildtype Tau Attenuates Axonal Transport Deficits Caused by Loss of APP in Mouse Models.

Increased Human Wildtype Tau Attenuates Axonal Transport Deficits Caused by Loss of APP in Mouse Models.

Increased Human Wildtype Tau Attenuates Axonal Transport Deficits Caused by Loss of APP in Mouse Models.

Increased Human Wildtype Tau Attenuates Axonal Transport Deficits Caused by Loss of APP in Mouse Models.

Amyloid precursor protein (APP) is implicated in axonal elongation, synaptic plasticity, and axonal transport. However, the role of APP on axonal transport in conjunction with the microtubule associated protein tau continues to be debated. Here we measured in vivo axonal transport in APP knockout mice with Manganese Enhanced MRI (MEMRI) to determine whether APP is necessary for maintaining normal axonal transport. We also tested how overexpression and mutations of tau affect axonal transport in the presence or absence of APP. In vivo axonal transport reduced significantly in the absence of functional APP. Overexpression of human wildtype tau maintained normal axonal transport and resulted in a transient compensation of axonal transport deficits in the absence of APP. Mutant R406Wtau in combination with the absence of APP compounded axonal transport deficits and these deficits persisted with age. These results indicate that APP is necessary for axonal transport, and overexpression of human wildtype tau can compensate for the absence of APP at an early age.

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