Genome-wide association analysis of treatment resistant schizophrenia for variant discovery and polygenic assessment
Hasan Çağın Lenk1,2,3, Elise Koch3, Kevin S O'Connell3
1Center for Psychopharmacology, Diakonhjemmet Hospital, Oslo, Norway.
Background:
Treatment resistant schizophrenia (TRS) is broadly defined as inadequate response to adequate treatment and is associated with a substantial increase in disease burden. Clozapine is the only approved treatment for TRS, showing superior clinical effect on overall symptomatology compared to other drugs, and is the prototype of atypical antipsychotics. Risperidone, another atypical antipsychotic with a more distinctive dopamine 2 antagonism, is commonly used in treatment of schizophrenia. Here, we conducted a genome-wide association study on patients treated with clozapine (TRS) vs. risperidone (non-TRS) and investigated whether single variants and/or polygenic risk score for schizophrenia are associated with TRS status. We hypothesized that patients who are treated with clozapine and risperidone might exhibit distinct neurobiological phenotypes that match pharmacological profiles of these drugs and can be explained by genetic differences. The study population (n = 1286) was recruited from a routine therapeutic drug monitoring (TDM) service between 2005 and 2022. History of a detectable serum concentration of clozapine and risperidone (without TDM history of clozapine) defined the TRS (n = 478) and non-TRS (n = 808) group, respectively.
Results:
We identified a suggestive association between TRS and a common variant within the LINC00523 gene with a significance just below the genome-wide threshold (rs79229764 C > T, OR = 4.89; p = 1.8 × 10-7). Polygenic risk score for schizophrenia was significantly associated with TRS (OR = 1.4, p = 2.1 × 10-6). In a large post-mortem brain sample from schizophrenia donors (n = 214; CommonMind Consortium), gene expression analysis indicated that the rs79229764 variant allele might be involved in the regulation of GPR88 and PUDP, which plays a role in striatal neurotransmission and intellectual disability, respectively.
Conclusions:
We report a suggestive genetic association at the rs79229764 locus with TRS and show that genetic liability for schizophrenia is positively associated with TRS. These results suggest a candidate locus for future follow-up studies to elucidate the molecular underpinnings of TRS. Our findings further demonstrate the value of both single variant and polygenic association analyses for TRS prediction.
Insights
Genetic analysis revealed a potential link between a LINC00523 gene variant and treatment-resistant schizophrenia (TRS). Higher genetic risk for schizophrenia was also associated with TRS, suggesting genetic factors influence treatment response.
Area of Science:
- Neuroscience
- Genetics
- Psychiatry
Background:
- Treatment-resistant schizophrenia (TRS) presents a significant challenge, characterized by inadequate response to standard antipsychotic treatments.
- Clozapine is the sole approved medication for TRS, demonstrating superior efficacy over other antipsychotics.
- Risperidone, another atypical antipsychotic, is frequently prescribed for schizophrenia, differing in its dopaminergic activity.
Purpose of the Study:
- To investigate genetic differences between patients with TRS treated with clozapine and those with schizophrenia treated with risperidone.
- To explore the association of single nucleotide variants and polygenic risk scores for schizophrenia with TRS status.
Main Methods:
- A genome-wide association study was conducted on 1286 patients, categorizing them into TRS (clozapine-treated) and non-TRS (risperidone-treated) groups.
- Genetic data was analyzed for single variants and polygenic risk scores associated with schizophrenia.
- Gene expression analysis was performed on post-mortem brain samples from schizophrenia donors.
Main Results:
- A suggestive association was found between TRS and a variant in the LINC00523 gene (rs79229764; p = 1.8 x 10-7).
- A significant positive association was observed between the polygenic risk score for schizophrenia and TRS (p = 2.1 x 10-6).
- The identified variant may influence the expression of GPR88 and PUDP, genes implicated in striatal neurotransmission and intellectual disability.
Conclusions:
- A potential genetic locus (rs79229764) associated with TRS was identified, warranting further investigation.
- Genetic liability for schizophrenia is linked to TRS, highlighting the role of genetic factors in treatment response.
- Both single variant and polygenic analyses are valuable tools for predicting TRS and understanding its underlying biology.
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