Department of Neurosciences, University of California, San Diego, La Jolla, CA, USA.
Institute of Pharmacology, Center for Physiology and Pharmacology, Medical University of Vienna, Austria.
Brain. 2022 Apr 29;145(3):879-886. doi: 10.1093/brain/awab373.
Loss of midbrain dopamine neurons causes the cardinal symptoms of Parkinson's disease. However, not all dopamine neurons are equally vulnerable and a better understanding of the cell-type specific properties relating to selective dopamine neuron degeneration is needed. Most midbrain dopamine neurons express the vesicular glutamate transporter VGLUT2 during development and a subset continue to express low levels of VGLUT2 in adulthood, enabling the co-release of glutamate. Moreover, VGLUT2 expression in dopamine neurons can be neuroprotective since its genetic disruption was shown to sensitize dopamine neurons to neurotoxins. Here, we show that in response to toxic insult, and in two distinct models of alpha-synuclein stress, VGLUT2 dopamine neurons were resilient to degeneration. Dopamine neurons expressing VGLUT2 were enriched whether or not insult induced dopamine neuron loss, suggesting that while VGLUT2 dopamine neurons are more resilient, VGLUT2 expression can also be transcriptionally upregulated by injury. Finally, we observed that VGLUT2 expression was enhanced in surviving dopamine neurons from post-mortem Parkinson's disease individuals. These data indicate that emergence of a glutamatergic identity in dopamine neurons may be part of a neuroprotective response in Parkinson's disease.
中脑多巴胺神经元的丧失导致了帕金森病的主要症状。然而,并非所有的多巴胺神经元都同样容易受到影响,因此需要更好地了解与选择性多巴胺神经元退化相关的细胞类型特异性特性。大多数中脑多巴胺神经元在发育过程中表达囊泡谷氨酸转运体 VGLUT2,一小部分在成年后仍继续低水平表达 VGLUT2,从而能够共释放谷氨酸。此外,多巴胺神经元中的 VGLUT2 表达具有神经保护作用,因为其遗传破坏被证明会使多巴胺神经元对神经毒素敏感。在这里,我们表明,在受到毒性损伤以及两种不同的α-突触核蛋白应激模型中,VGLUT2 多巴胺神经元对退化具有弹性。无论是否引起多巴胺神经元丢失,表达 VGLUT2 的多巴胺神经元都更丰富,这表明虽然 VGLUT2 多巴胺神经元更具弹性,但损伤也可以转录上调 VGLUT2 表达。最后,我们观察到,来自帕金森病患者死后的存活多巴胺神经元中 VGLUT2 的表达增强。这些数据表明,多巴胺神经元中谷氨酸能特性的出现可能是帕金森病中神经保护反应的一部分。