Pharmacological impacts on schizophrenia functional analysis: a postmortem proteome study.
Shukla, R.; Alnafisah, R. S.; Reigle, J.; O'Donovan, S. M.; Funk, A. J.; Meller, J. M.; McCullumsmith, R. E.
Show abstract
Schizophrenia (SCZ) is a severe and debilitating mental illness. Antipsychotic drugs (APDs) are used to treat both positive and negative SCZ symptoms, by influencing the cellular, subcellular-synaptic, and molecular processes. We posit that these effects influence our understanding of SCZ. To address this, we analyzed postmortem dorsolateral prefrontal cortex grey matter samples from control and SCZ subjects (n=10/group) using liquid-chromatography mass-spectrometry-based proteomics. We retrieved SCZ-altered and APD-influenced proteome-sets using linear and mixed linear models, respectively, and validated them experimentally using independent cohorts and insilico using published datasets. Functional analysis of proteome-sets was contrasted at the biological pathway, cell-type, subcellular-synaptic, and drug-target levels. The SCZ-altered proteome was conserved across several studies from DLPFC and other brain areas and was dependent on drug effect. At the pathway level, we observed an aberrant extracellular event and, except for homeostasis, signal-transduction, cytoskeleton, and dendrites associated downregulated changes, the APDs compensated for the majority of the SCZ-altered pathways. At the cell-type level, the up-and down-regulated SCZ-altered events were associated with two different subsets of striatum projecting layer-5 pyramidal-neurons regulating dopaminergic secretion. At the subcellular synaptic level, compensatory pre- and post-synaptic events were observed. At the drug target level, dopaminergic processes influence the SCZ-altered up-regulated proteome, whereas non-dopaminergic and a diverse array of non-neuromodulatory mechanisms influence the SCZ-altered down-regulated proteome. While these findings are dependent on pharmacological effects, they are also consistent with previous SCZ studies, implying the need to re-evaluate previous results. We discuss our findings in the context of cortico-striatal influence in SCZ-pathology.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- MAP2 is differentially phosphorylated in schizophrenia, altering its function 95%
- The schizophrenia-associated variant in SLC39A8 alters N-glycosylation in the mouse brain 95%
- Quantitative trait loci mapping of circulating metabolites in cerebrospinal fluid to uncover biological mechanisms involved in brain-related phenotypes 94%
Similar papers in this journal
- Meta-analysis of the brain transcriptomes of multiple genetic mouse models of schizophrenia highlights dysregulation in striatum and thalamus 95%
- Multi-omics profiling of DNA methylation and gene expression alterations in human cocaine use disorder 94%
- Alterations in Acylcarnitines, Amines, and Lipids Inform about Mechanism of Action of Citalopram/Escitalopram in Major Depression 94%
Similar papers in this journal
- Pharmacological enrichment of polygenic risk for precision medicine in complex disorders 94%
- A mesocorticolimbic dopamine gene network moderates the effect of early adversity on the risk for psychiatric and cardio-metabolic comorbidities 93%
- JNK1 And Downstream Signalling Hubs Regulate Anxiety-Like Behaviours In A Zebrafish Larvae Phenotypic Screen 93%
Similar papers in this journal
- Proteomic Characterization of Striatal Neurabin Interactome and its Sex Specific Impact on Motor Behavior. 92%
- Exifone is a Potent HDAC1 Activator with Neuroprotective Activity in Human Neuronal Models of Neurodegeneration 90%
- Regulation of dopamine release by tonic activity patterns in the striatal brain slice 90%
Similar papers in this journal
- Cerebrospinal fluid concentration of complement component 4A is increased in first-episode schizophrenia 94%
- Single nuclei transcriptomics in human and non-human primate striatum implicates neuronal DNA damage and proinflammatory signaling in opioid use disorder 94%
- Interneuron diversity in the human dorsal striatum 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.