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  Loss of the parkinsonism-associated protein FBXO7 in glutamatergic forebrain neurons in mice leads to abnormal motor behavior and synaptic defects

Wang, J., Joseph, S., Vingill, S., Dere, E., Tatenhorst, L., Ronnenberg, A., et al. (2023). Loss of the parkinsonism-associated protein FBXO7 in glutamatergic forebrain neurons in mice leads to abnormal motor behavior and synaptic defects. Journal of Neurochemistry, 167(2), 296-317. doi:10.1111/jnc.15962.

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Journal of Neurochemistry - 2023 - Wang - Loss of the parkinsonism‐associated protein FBXO7 in glutamatergic forebrain.pdf (Publisher version), 27MB
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Journal of Neurochemistry - 2023 - Wang - Loss of the parkinsonism‐associated protein FBXO7 in glutamatergic forebrain.pdf
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Wang, Jingbo, Author
Joseph, Sabitha, Author
Vingill, Siv1, Author           
Dere, Ekrem1, Author           
Tatenhorst, Lars, Author
Ronnenberg, Anja1, Author           
Lingor, Paul, Author
Preisinger, Christian, Author
Ehrenreich, Hannelore1, Author           
Schulz, Joerg B., Author
Stegmueller, Judith, Author
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1Research Group of Clinical Neuroscience, Max Planck Institute for Multidisciplinary Sciences, Max Planck Society, ou_3350303              

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 Abstract: Mutations in PARK15, which encodes for the F-box protein FBXO7 have been associated with Parkinsonian Pyramidal syndrome, a rare and complex movement disorder with Parkinsonian symptoms, pyramidal tract signs and juvenile onset. Our previous study showed that systemic loss of Fbxo7 in mice causes motor defects and premature death. We have also demonstrated that FBXO7 has a crucial role in neurons as the specific deletion in tyrosine hydroxylase-positive or glutamatergic forebrain neurons leads to late-onset or early-onset motor dysfunction, respectively. In this study, we examined NEX-Cre;Fbxo7fl/fl mice, in which Fbxo7 was specifically deleted in glutamatergic projection neurons. The effects of FBXO7 deficiency on striatal integrity were investigated with HPLC and histological analyses. NEX-Cre;Fbxo7fl/fl mice revealed an increase in striatal dopamine concentrations, changes in the glutamatergic, GABAergic and dopaminergic pathways, astrogliosis and microgliosis and little or no neuronal loss in the striatum. To determine the effects on the integrity of the synapse, we purified synaptic membranes, subjected them to quantitative mass spectrometry analysis and found alterations in the complement system, endocytosis and exocytosis pathways. These neuropathological changes coincide with alterations in spontaneous home cage behavior. Taken together, our findings suggest that FBXO7 is crucial for corticostriatal projections and the synaptic integrity of the striatum, and consequently for proper motor control.

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Language(s): eng - English
 Dates: 2023-09-272023-10
 Publication Status: Issued
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 Rev. Type: Peer
 Identifiers: DOI: 10.1111/jnc.15962
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Project name : This work was funded by the Deutsche Forschungsgemeinschaft (DFG, German Research Foundation – 368482240/GRK2416 and STE1117/10-1, STE1117/14-1), START program, RWTH Aachen (JS), and the GGNB Excellence Stipend, University of Göttingen (SV). We thank Sandra Goebbels and Klaus-Armin Nave (MPI for Multidisciplinary Sciences, Göttingen) for providing the NEX-Cre driver mouse line. Open Access funding enabled and organized by Projekt DEAL.
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Title: Journal of Neurochemistry
  Other : J. Neurochem.
Source Genre: Journal
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Publ. Info: Hoboken, New Jersey, USA : Wiley
Pages: - Volume / Issue: 167 (2) Sequence Number: - Start / End Page: 296 - 317 Identifier: ISSN: 0022-3042
CoNE: https://pure.mpg.de/cone/journals/resource/954925416956_1