Literature DB >> 32928885

VGluT2 Expression in Dopamine Neurons Contributes to Postlesional Striatal Reinnervation.

Willemieke M Kouwenhoven1, Guillaume Fortin1, Anna-Maija Penttinen1, Clélia Florence1, Benoît Delignat-Lavaud1, Marie-Josée Bourque1, Thorsten Trimbuch2, Milagros Pereira Luppi3, Alix Salvail-Lacoste4, Pascale Legault4, Jean-François Poulin3, Christian Rosenmund2, Raj Awatramani3, Louis-Éric Trudeau5.   

Abstract

A subset of adult ventral tegmental area dopamine (DA) neurons expresses vesicular glutamate transporter 2 (VGluT2) and releases glutamate as a second neurotransmitter in the striatum, while only few adult substantia nigra DA neurons have this capacity. Recent work showed that cellular stress created by neurotoxins such as MPTP and 6-hydroxydopamine can upregulate VGluT2 in surviving DA neurons, suggesting the possibility of a role in cell survival, although a high level of overexpression could be toxic to DA neurons. Here we examined the level of VGluT2 upregulation in response to neurotoxins and its impact on postlesional plasticity. We first took advantage of an in vitro neurotoxin model of Parkinson's disease and found that this caused an average 2.5-fold enhancement of Vglut2 mRNA in DA neurons. This could represent a reactivation of a developmental phenotype because using an intersectional genetic lineage-mapping approach, we find that >98% of DA neurons have a VGluT2+ lineage. Expression of VGluT2 was detectable in most DA neurons at embryonic day 11.5 and was localized in developing axons. Finally, compatible with the possibility that enhanced VGluT2 expression in DA neurons promotes axonal outgrowth and reinnervation in the postlesional brain, we observed that DA neurons in female and male mice in which VGluT2 was conditionally removed established fewer striatal connections 7 weeks after a neurotoxin lesion. Thus, we propose here that the developmental expression of VGluT2 in DA neurons can be reactivated at postnatal stages, contributing to postlesional plasticity of dopaminergic axons.SIGNIFICANCE STATEMENT A small subset of dopamine neurons in the adult, healthy brain expresses vesicular glutamate transporter 2 (VGluT2) and thus releases glutamate as a second neurotransmitter in the striatum. This neurochemical phenotype appears to be plastic as exposure to neurotoxins, such as 6-OHDA or MPTP, that model certain aspects of Parkinson's disease pathophysiology, boosts VGluT2 expression in surviving dopamine neurons. Here we show that this enhanced VGluT2 expression in dopamine neurons drives axonal outgrowth and contributes to dopamine neuron axonal plasticity in the postlesional brain. A better understanding of the neurochemical changes that occur during the progression of Parkinson's disease pathology will aid the development of novel therapeutic strategies for this disease.
Copyright © 2020 the authors.

Entities:  

Keywords:  Parkinson's; axonal; dopamine; glutamate; reinnervation; sprouting

Mesh:

Substances:

Year:  2020        PMID: 32928885      PMCID: PMC7577590          DOI: 10.1523/JNEUROSCI.0823-20.2020

Source DB:  PubMed          Journal:  J Neurosci        ISSN: 0270-6474            Impact factor:   6.167


  48 in total

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5.  Synaptic Vesicle Recycling Pathway Determines Neurotransmitter Content and Release Properties.

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7.  Cell intrinsic and extrinsic factors contribute to enhance neural circuit reconstruction following transplantation in Parkinsonian mice.

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9.  Timecourse of striatal re-innervation following lesions of dopaminergic SNpc neurons of the rat.

Authors:  D Stanic; D I Finkelstein; D W Bourke; J Drago; M K Horne
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6.  VGLUT2 Is a Determinant of Dopamine Neuron Resilience in a Rotenone Model of Dopamine Neurodegeneration.

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7.  Identification of ASCL1 as a determinant for human iPSC-derived dopaminergic neurons.

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Review 9.  Glutamic Acid Transporters: Targets for Neuroprotective Therapies in Parkinson's Disease.

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Review 10.  Dopamine Neurons That Cotransmit Glutamate, From Synapses to Circuits to Behavior.

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