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A novel mechanism to explain protein abnormalities in schizophrenia based on the flavivirus resistance gene
1Mental Health Service Line, McGuire Veterans Administration Medical Center, 1201 Broad Rock Blvd, Richmond, VA 23249, USA. jbrown2185@aol.com
Abstract:
The geographical distribution of schizophrenia was previously shown to correlate with the global distribution of tick-borne flaviviruses. The correlation suggests a natural resistance gene to flaviviruses could be involved in schizophrenia. The flavivirus resistance gene, Flv, a gene found in wild mice and certain in-bred strains, confers resistance to flaviviruses through the interaction of cellular proteins with the flaviviral 3' untranslated regions (UTRs). Although the sequence and product of Flv are unknown, translation elongation factor alpha-1 (EF-1) is a protein known to interact with the 3' UTR flavivirus RNA, forming some complexes with long half-lives that inhibit RNA growth. A study was performed to assess the homology between flaviviral UTRs, subunits of EF-1, and selected proteins reported as abnormal in schizophrenia. The UTRs of four flaviviruses with wide geographical and phylogenic distribution were manually translated. Using the National Biomedical Research Foundation protein databank, the amino acid sequences were correlated with the amino acid sequences of selected proteins. The amino acid sequences of the EF-1 subunits were then correlated with the same proteins. Similar amino acid correlations between the proteins, EF-1 subunits and viral UTRs suggest that translational pathophysiology resulting from the product of Flv can be postulated as the cause of protein abnormalities observed in schizophrenia.
Insights
A potential link between tick-borne flaviviruses and schizophrenia is explored. Similarities in protein sequences suggest a flavivirus resistance gene may cause schizophrenia-related protein abnormalities.
Area of Science:
- Neuroscience
- Virology
- Genetics
Background:
- Schizophrenia's geographical distribution correlates with tick-borne flaviviruses.
- This suggests a natural flavivirus resistance gene (Flv) may be involved.
- The Flv gene's product and sequence are currently unknown.
Purpose of the Study:
- To investigate the potential role of the Flv gene in schizophrenia.
- To assess homology between flaviviral UTRs, EF-1 subunits, and schizophrenia-associated proteins.
Main Methods:
- Manual translation of flaviviral 3' UTRs from four viruses.
- Correlation of translated UTRs and EF-1 subunit amino acid sequences with selected proteins using the NBRF protein databank.
Main Results:
- Identified similar amino acid correlations between flaviviral UTRs, EF-1 subunits, and proteins implicated in schizophrenia.
- These findings suggest a potential mechanism for protein abnormalities in schizophrenia.
Conclusions:
- Translational pathophysiology, potentially mediated by the Flv gene product, is postulated as a cause of schizophrenia-associated protein abnormalities.
- Further research is warranted to confirm the role of Flv and EF-1 in schizophrenia pathogenesis.