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Updated: Oct 7, 2025

Tissue-specific miRNA Expression Profiling in Mouse Heart Sections Using In Situ Hybridization
Published on: September 15, 2018
Altered expression levels of miR-144-3p and ATP1B2 are associated with schizophrenia
Bo Pan1,2, Yuting Wang1,2, Yiwen Shi2
1The Key Laboratory of Syndrome Differentiation and Treatment of Gastric Cancer of the State Administration of Traditional Chinese Medicine, Yangzhou University Medical College, Yangzhou, PR China.
Abstract:
Objectives: Schizophrenia is a devastating mental disease. Various microRNAs were proven to be associated with schizophrenia. Altered microRNA-144-3p (miR-144-3p) levels were found in various neurological and psychotic disorders. Beta2-subunit of Na(+)/K(+)-ATPase (ATP1B2) regulates neuronal migration and cell growth during brain development through the PI3K/Akt/mTOR pathway. The present study explored the associations of miR-144-3p and ATP1B2 with schizophrenia and their mutual interaction.Methods: A schizophrenic animal model employing repeated MK-801 administration was established and 293 T cells over-expressing miR-144-3p were constructed by lentivirus. The in vitro and in vivo levels of miR-144-3p, ATP1B2, and the PI3K/Akt/mTOR pathway were examined by qRT-PCR and Western Blots. The interaction between miR-144-3p and ATP1B2 was predicted and assessed by using bioinformatic methods and a luciferase reporter gene assay, respectively.Results: MiR-144-3p expression was elevated in the schizophrenic rat hippocampus. ATP1B2 was down-regulated in schizophrenic patients by analysing GEO datasets. Additionally, miR-144-3p can directly bind with ATP1B2. Furthermore, the ATP1B2 expression and PI3K/Akt/mTOR phosphorylation levels were down-regulated in the 293 T cells over-expressing miR-144-3p and schizophrenic rat hippocampus, which could be reversed by risperidone.Conclusions: This study revealed that up-regulated miR-144-3p might be associated with schizophrenia through down-regulating ATP1B2, implicating new targets of schizophrenia treatment.
Insights
Elevated microRNA-144-3p (miR-144-3p) levels in schizophrenia may down-regulate ATP1B2, suggesting a novel therapeutic target for this mental disorder.
Area of Science:
- Neuroscience
- Molecular Biology
- Genetics
Background:
- Schizophrenia is a severe mental disorder with complex etiological factors.
- MicroRNAs (miRNAs) are implicated in various neurological and psychotic disorders.
- MicroRNA-144-3p (miR-144-3p) and Beta2-subunit of Na(+)/K(+)-ATPase (ATP1B2) have been linked to brain function and development.
Purpose of the Study:
- To investigate the association between miR-144-3p and ATP1B2 in schizophrenia.
- To explore the interaction between miR-144-3p and ATP1B2.
- To examine the role of this interaction in the PI3K/Akt/mTOR pathway.
Main Methods:
- Established a schizophrenia animal model using MK-801 administration.
- Utilized lentivirus to over-express miR-144-3p in 293T cells.
- Assessed miR-144-3p and ATP1B2 levels via qRT-PCR and Western Blots.
- Employed bioinformatic analysis and luciferase reporter assays to confirm interaction.
Main Results:
- miR-144-3p expression was significantly elevated in the hippocampus of schizophrenic rats.
- ATP1B2 levels were down-regulated in schizophrenic patients (GEO datasets).
- miR-144-3p directly binds to ATP1B2, leading to its down-regulation.
- Down-regulation of ATP1B2 and PI3K/Akt/mTOR pathway phosphorylation was observed, reversible by risperidone.
Conclusions:
- Up-regulated miR-144-3p is potentially involved in schizophrenia pathogenesis.
- The mechanism involves the down-regulation of ATP1B2.
- This miR-144-3p/ATP1B2 axis presents a potential therapeutic target for schizophrenia treatment.
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