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Elevated endogenous GDNF induces altered dopamine signalling in mice and correlates with clinical severity in schizophrenia

Mätlik Kärt; Garton Daniel R.; Montaño-Rodríguez Ana R.; Olfat Soophie; Eren Feride; Casserly Laoise; Damdimopoulos Anastasios; Panhelainen Anne; Porokuokka L. Lauriina; Kopra Jaakko J.; Turconi Giorgio; Schweizer Nadine; Bereczki Erika; Piehl Fredrik; Engberg Göran; Cervenka Simon; Piepponen T. Petteri; Zhang Fu-Ping; Sipilä Petra; Jakobsson Johan; Sellgren Carl M.; Erhardt Sophie; Andressoo Jaan-Olle

Elevated endogenous GDNF induces altered dopamine signalling in mice and correlates with clinical severity in schizophrenia

Mätlik Kärt
Garton Daniel R.
Montaño-Rodríguez Ana R.
Olfat Soophie
Eren Feride
Casserly Laoise
Damdimopoulos Anastasios
Panhelainen Anne
Porokuokka L. Lauriina
Kopra Jaakko J.
Turconi Giorgio
Schweizer Nadine
Bereczki Erika
Piehl Fredrik
Engberg Göran
Cervenka Simon
Piepponen T. Petteri
Zhang Fu-Ping
Sipilä Petra
Jakobsson Johan
Sellgren Carl M.
Erhardt Sophie
Andressoo Jaan-Olle
Katso/Avaa
ZhangEtAl2022ElevatedEndogenousGDNF.pdf (4.447Mb)
Lataukset: 

SpringerNature
doi:10.1038/s41380-022-01554-2
URI
https://www.nature.com/articles/s41380-022-01554-2
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Julkaisun pysyvä osoite on:
https://urn.fi/URN:NBN:fi-fe2022081153945
Tiivistelmä

Presynaptic increase in striatal dopamine is the primary dopaminergic abnormality in schizophrenia, but the underlying mechanisms are not understood. Here, we hypothesized that increased expression of endogenous GDNF could induce dopaminergic abnormalities that resemble those seen in schizophrenia. To test the impact of GDNF elevation, without inducing adverse effects caused by ectopic overexpression, we developed a novel in vivo approach to conditionally increase endogenous GDNF expression. We found that a 2-3-fold increase in endogenous GDNF in the brain was sufficient to induce molecular, cellular, and functional changes in dopamine signalling in the striatum and prefrontal cortex, including increased striatal presynaptic dopamine levels and reduction of dopamine in prefrontal cortex. Mechanistically, we identified adenosine A2a receptor (A(2A)R), a G-protein coupled receptor that modulates dopaminergic signalling, as a possible mediator of GDNF-driven dopaminergic abnormalities. We further showed that pharmacological inhibition of A(2A)R with istradefylline partially normalised striatal GDNF and striatal and cortical dopamine levels in mice. Lastly, we found that GDNF levels are increased in the cerebrospinal fluid of first episode psychosis patients, and in post-mortem striatum of schizophrenia patients. Our results reveal a possible contributor for increased striatal dopamine signalling in a subgroup of schizophrenia patients and suggest that GDNF-A(2A)R crosstalk may regulate dopamine function in a therapeutically targetable manner.

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