ArticleNeurobiology of disease2021
Alteration of the cholinergic system and motor deficits in cholinergic neuron-specific Dyt1 knockout mice.
Article in Neurobiology of disease, 2021. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 10 papers.
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Who cites it
10 citing papers in PubMed, 14 citations in OpenAlex.
- Central biogenic amine deficiency with concomitant exploratory behavioral deficits in Dnajc12 knock-out mice.NPJ Parkinson's disease · 2025Article
- Subtle changes in Purkinje cell firing in Purkinje cell-specificDystonia (Lausanne, Switzerland) · 2025Article
- Motor deficit and lack of overt dystonia in Dlx conditional Dyt1 knockout mice.Behavioural brain research · 2023Article
- DYT-Frontiers in neuroscience · 2023Review
- Transgenic Mice for the Translational Study of Neuropathic Pain and Dystonia.International journal of molecular sciences · 2022Review
- Electrophysiological characterization of the striatal cholinergic interneurons inDystonia (Lausanne, Switzerland) · 2022Article
- Hyperactivity of Purkinje cell and motor deficits in C9orf72 knockout mice.Molecular and cellular neurosciences · 2022Article
- Vesicular Acetylcholine Transporter Alters Cholinergic Tone and Synaptic Plasticity in DYT1 Dystonia.Movement disorders : official journal of the Movement Disorder Society · 2021Article
- Cell-specific effects of Dyt1 knock-out on sensory processing, network-level connectivity, and motor deficits.Experimental neurology · 2021Article
- Characterization of the direct pathway in Dyt1 ΔGAG heterozygous knock-in mice and dopamine receptor 1-expressing-cell-specific Dyt1 conditional knockout mice.Behavioural brain research · 2021Article
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Authors and funding
12 authors at 1 institution in 1 country.
Funding
Abstract
Dystonia is a neurological movement disorder characterized by sustained or intermittent muscle contractions, repetitive movement, and sometimes abnormal postures. DYT1 dystonia is one of the most common genetic dystonias, and most patients carry heterozygous DYT1 ∆GAG mutations causing a loss of a glutamic acid of the protein torsinA. Patients can be treated with anticholinergics, such as trihexyphenidyl, suggesting an abnormal cholinergic state. Early work on the cell-autonomous effects of Dyt1 deletion with ChI-specific Dyt1 conditional knockout mice (Dyt1 Ch1KO) revealed abnormal electrophysiological responses of striatal ChIs to muscarine and quinpirole, motor deficits, and no changes in the number or size of the ChIs. However, the Chat-cre line that was used to derive Dyt1 Ch1KO mice contained a neomycin cassette and was reported to have ectopic cre-mediated recombination. In this study, we generated a Dyt1 Ch2KO mouse line by removing the neomycin cassette in Dyt1 Ch1KO mice. The Dyt1 Ch2KO mice showed abnormal paw clenching behavior, motor coordination and balance deficits, impaired motor learning, reduced striatal choline acetyltransferase protein level, and a reduced number of striatal ChIs. Furthermore, the mutant striatal ChIs had a normal muscarinic inhibitory function, impaired quinpirole-mediated inhibition, and altered current density. Our findings demonstrate a cell-autonomous effect of Dyt1 deletion on the striatal ChIs and a critical role for the striatal ChIs and corticostriatal pathway in the pathogenesis of DYT1 dystonia.
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