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Is the mTOR-signalling cascade disrupted in Schizophrenia?
Anand Gururajan1, Maarten van den Buuse
1Behavioural Neuroscience Laboratory, The Florey Institute of Neuroscience & Mental Health, Parkville, Vic., Australia.
Abstract:
The mammalian target of rapamycin (mTOR) signalling cascade is involved in the intracellular regulation of protein synthesis, specifically for proteins involved in controlling neuronal morphology and facilitating synaptic plasticity. Research has revealed that the activity of the mTOR cascade is influenced by several extracellular and environmental factors that have been implicated in schizophrenia. Therefore, there is reason to believe that one of the downstream consequences of dysfunction or hypofunction of these factors in schizophrenia is disrupted mTOR signalling and hence impaired protein synthesis. This results in abnormal neurodevelopment and deficient synaptic plasticity, outcomes which could underlie some of the positive, negative and cognitive symptoms of schizophrenia. This review will discuss the functional roles of the mTOR cascade and present evidence in support of a novel mTOR-based hypothesis of the neuropathology of schizophrenia. During neurodevelopment, genetic and epigenetic factors can disrupt mTOR signalling which affects synthesis of proteins essential for correct neuronal growth and network connectivity. This renders the CNS particularly vulnerable to the effects of secondary factors during adolescence which increases the risk of developing schizophrenia in adulthood. This review discusses the functional roles of the mTOR cascade and presents evidence in support of a novel mTOR-based hypothesis of the neuropathology of schizophrenia. Testing this hypothesis will advance our understanding of the aetiology of this illness and reveal novel therapeutic targets.
Insights
Disrupted mammalian target of rapamycin (mTOR) signaling impairs protein synthesis, affecting neurodevelopment and synaptic plasticity. This mTOR pathway dysfunction may underlie schizophrenia symptoms, offering new therapeutic targets.
Area of Science:
- Neuroscience
- Molecular Biology
- Psychiatry
Background:
- The mammalian target of rapamycin (mTOR) pathway regulates protein synthesis crucial for neuronal morphology and synaptic plasticity.
- Environmental and extracellular factors influencing mTOR signaling are implicated in schizophrenia.
- Disruption of these factors in schizophrenia may lead to impaired mTOR signaling and protein synthesis.
Purpose of the Study:
- To review the functional roles of the mTOR cascade in the context of schizophrenia.
- To present evidence supporting a novel mTOR-based hypothesis for schizophrenia neuropathology.
- To explore mTOR's role in neurodevelopmental and adolescent vulnerability to schizophrenia.
Main Methods:
- Literature review of mTOR signaling pathways.
- Analysis of genetic and epigenetic factors affecting mTOR.
- Examination of environmental influences on mTOR in schizophrenia.
Main Results:
- mTOR pathway dysfunction can result in abnormal neurodevelopment and deficient synaptic plasticity.
- These deficits may contribute to positive, negative, and cognitive symptoms of schizophrenia.
- Genetic/epigenetic factors disrupting mTOR during neurodevelopment increase vulnerability to schizophrenia.
Conclusions:
- A novel hypothesis implicates mTOR pathway dysfunction in schizophrenia neuropathology.
- Testing this hypothesis can enhance understanding of schizophrenia etiology.
- This research may reveal novel therapeutic targets for schizophrenia.
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