Wodrich Andrew P K, Harris Brent T, Giniger Edward
National Institute of Neurological Disorders and Stroke, National Institutes of Health, Bethesda, MD.
Interdisciplinary Program in Neuroscience, Georgetown University, Washington, DC.
bioRxiv. 2024 Feb 14:2024.02.14.580288. doi: 10.1101/2024.02.14.580288.
Changes in mitochondrial distribution are a feature of numerous age-related neurodegenerative diseases. In , reducing the activity of Cdk5 causes a neurodegenerative phenotype and is known to affect several mitochondrial properties. Therefore, we investigated whether alterations of mitochondrial distribution are involved in Cdk5-associated neurodegeneration. We find that reducing Cdk5 activity does not alter the balance of mitochondrial localization to the somatodendritic vs. axonal neuronal compartments of the mushroom body, the learning and memory center of the brain. We do, however, observe changes in mitochondrial distribution at the axon initial segment (AIS), a neuronal compartment located in the proximal axon involved in neuronal polarization and action potential initiation. Specifically, we observe that mitochondria are partially excluded from the AIS in wild-type neurons, but that this exclusion is lost upon reduction of Cdk5 activity, concomitant with the shrinkage of the AIS domain that is known to occur in this condition. This mitochondrial redistribution into the AIS is not likely due to the shortening of the AIS domain itself but rather due to altered Cdk5 activity. Furthermore, mitochondrial redistribution into the AIS is unlikely to be an early driver of neurodegeneration in the context of reduced Cdk5 activity.
线粒体分布的变化是许多与年龄相关的神经退行性疾病的一个特征。在[具体研究中],降低Cdk5的活性会导致神经退行性表型,并且已知会影响多种线粒体特性。因此,我们研究了线粒体分布的改变是否与Cdk5相关的神经退行性变有关。我们发现,降低Cdk5活性并不会改变线粒体在蘑菇体(大脑的学习和记忆中心)的树突-体细胞与轴突神经元区室之间的定位平衡。然而,我们确实观察到轴突起始段(AIS)的线粒体分布发生了变化,AIS是位于近端轴突中的一个神经元区室,参与神经元极化和动作电位的起始。具体而言,我们观察到在野生型神经元中,线粒体部分被排除在AIS之外,但在Cdk5活性降低时这种排除消失了,同时伴随着已知在这种情况下会发生的AIS区域的收缩。这种线粒体重新分布到AIS中不太可能是由于AIS区域本身的缩短,而是由于Cdk5活性的改变。此外,在Cdk5活性降低的情况下,线粒体重新分布到AIS中不太可能是神经退行性变的早期驱动因素。