Rodríguez-Martín Teresa, Pooler Amy M, Lau Dawn H W, Mórotz Gábor M, De Vos Kurt J, Gilley Jonathan, Coleman Michael P, Hanger Diane P
King's College London, Institute of Psychiatry, Psychology & Neuroscience, Maurice Wohl Clinical Neuroscience Institute, Department of Basic and Clinical Neuroscience, London, SE5 9NU, UK.
Signalling Programme, The Babraham Institute, Cambridge CB22 3AT, UK.
Neurobiol Dis. 2016 Jan;85:1-10. doi: 10.1016/j.nbd.2015.10.007. Epub 2015 Oct 11.
Expression of the frontotemporal dementia-related tau mutation, P301L, at physiological levels in adult mouse brain (KI-P301L mice) results in overt hypophosphorylation of tau and age-dependent alterations in axonal mitochondrial transport in peripheral nerves. To determine the effects of P301L tau expression in the central nervous system, we examined the kinetics of mitochondrial axonal transport and tau phosphorylation in primary cortical neurons from P301L knock-in (KI-P301L) mice. We observed a significant 50% reduction in the number of mitochondria in the axons of cortical neurons cultured from KI-P301L mice compared to wild-type neurons. Expression of murine P301L tau did not change the speed, direction of travel or likelihood of movement of mitochondria. Notably, the angle that defines the orientation of the mitochondria in the axon, and the volume of individual moving mitochondria, were significantly increased in neurons expressing P301L tau. We found that murine tau phosphorylation in KI-P301L mouse neurons was diminished and the ability of P301L tau to bind to microtubules was also reduced compared to tau in wild-type neurons. The P301L mutation did not influence the ability of murine tau to associate with membranes in cortical neurons or in adult mouse brain. We conclude that P301L tau is associated with mitochondrial changes and causes an early reduction in murine tau phosphorylation in neurons coupled with impaired microtubule binding of tau. These results support the association of mutant tau with detrimental effects on mitochondria and will be of significance for the pathogenesis of tauopathies.
额颞叶痴呆相关的tau蛋白突变P301L在成年小鼠大脑中的生理水平表达(KI-P301L小鼠)导致tau蛋白明显低磷酸化以及外周神经轴突线粒体运输的年龄依赖性改变。为了确定P301L tau蛋白在中枢神经系统中的作用,我们检测了来自P301L基因敲入(KI-P301L)小鼠的原代皮质神经元中线粒体轴突运输的动力学和tau蛋白磷酸化情况。我们观察到,与野生型神经元相比,从KI-P301L小鼠培养的皮质神经元轴突中的线粒体数量显著减少了50%。鼠源P301L tau蛋白的表达并未改变线粒体的移动速度、移动方向或移动可能性。值得注意的是,在表达P301L tau蛋白的神经元中,定义轴突中线粒体方向的角度以及单个移动线粒体的体积均显著增加。我们发现,与野生型神经元中的tau蛋白相比,KI-P301L小鼠神经元中的鼠源tau蛋白磷酸化减少,且P301L tau蛋白与微管结合的能力也降低。P301L突变并不影响鼠源tau蛋白在皮质神经元或成年小鼠大脑中与膜结合的能力。我们得出结论,P301L tau蛋白与线粒体变化相关,并导致神经元中鼠源tau蛋白磷酸化早期减少,同时tau蛋白与微管的结合受损。这些结果支持了突变型tau蛋白与线粒体有害影响之间的关联,对tau蛋白病的发病机制具有重要意义。