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突触融合蛋白-1 依赖性的轴突多巴胺脉冲释放对于小鼠的基本运动行为并非必需。

Synaptotagmin-1-dependent phasic axonal dopamine release is dispensable for basic motor behaviors in mice.

机构信息

Department of Pharmacology and Physiology, Faculty of Medicine, Université de Montréal, Montreal, QC, Canada.

Department of Neurosciences, Faculty of Medicine, Université de Montréal, Montreal, QC, Canada.

出版信息

Nat Commun. 2023 Jul 11;14(1):4120. doi: 10.1038/s41467-023-39805-7.

Abstract

In Parkinson's disease (PD), motor dysfunctions only become apparent after extensive loss of DA innervation. This resilience has been hypothesized to be due to the ability of many motor behaviors to be sustained through a diffuse basal tone of DA; but experimental evidence for this is limited. Here we show that conditional deletion of the calcium sensor synaptotagmin-1 (Syt1) in DA neurons (Syt1 cKO mice) abrogates most activity-dependent axonal DA release in the striatum and mesencephalon, leaving somatodendritic (STD) DA release intact. Strikingly, Syt1 cKO mice showed intact performance in multiple unconditioned DA-dependent motor tasks and even in a task evaluating conditioned motivation for food. Considering that basal extracellular DA levels in the striatum were unchanged, our findings suggest that activity-dependent DA release is dispensable for such tasks and that they can be sustained by a basal tone of extracellular DA. Taken together, our findings reveal the striking resilience of DA-dependent motor functions in the context of a near-abolition of phasic DA release, shedding new light on why extensive loss of DA innervation is required to reveal motor dysfunctions in PD.

摘要

在帕金森病(PD)中,运动功能障碍只有在 DA 神经支配广泛丧失后才会显现。这种弹性被假设是由于许多运动行为能够通过 DA 的弥漫基础张力来维持;但对此的实验证据有限。在这里,我们表明 DA 神经元中钙传感器突触结合蛋白-1(Syt1)的条件性缺失(Syt1 cKO 小鼠)消除了纹状体和中脑内大多数依赖于活动的轴突 DA 释放,而保留了树突体(STD)DA 释放完整。引人注目的是,Syt1 cKO 小鼠在多项非条件性依赖于 DA 的运动任务中表现正常,甚至在评估食物条件动机的任务中也表现正常。考虑到纹状体中细胞外 DA 水平基本不变,我们的发现表明,依赖于活动的 DA 释放对于这些任务是可有可无的,它们可以通过细胞外 DA 的基础张力来维持。总之,我们的发现揭示了在几乎消除相位性 DA 释放的情况下,DA 依赖性运动功能的惊人弹性,这为为什么需要广泛丧失 DA 神经支配才能在 PD 中揭示运动功能障碍提供了新的视角。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9ddc/10336101/26f5d94fce79/41467_2023_39805_Fig1_HTML.jpg

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