The relationship between COMT, proline, and negative symptoms in clinical high risk and recent psychosis onset

COMT、脯氨酸与临床高危人群和近期精神病发作患者的阴性症状之间的关系

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Abstract

Individuals at clinical high-risk (CHR) of developing psychosis, as well as patients with recent psychosis onset (RO), experience significant negative symptoms that detrimentally impact daily-life functioning and are associated with poor outcomes, even in those who do not convert to psychosis. Targeting negative symptoms may thus hold promise for the treatment of CHR and RO patients. Building from previous findings we examined whether the catechol-O-methyltransferase (COMT) Val(158)Met functional polymorphism and fasting peripheral proline concentration predicts the severity of negative symptoms experienced by adolescents and young adults at CHR or those with RO. As hypothesized, the interaction between fasting plasma proline and COMT predicted negative symptoms, as measured via the Scale for the Assessment of Negative Symptoms (SANS) total (n = 50, β = 0.066, adjusted p = 0.007) and global severity scores (n = 50, coefficient = 0.026, adjusted p = 0.003): Higher proline was beneficial for Val/Val subjects, but detrimental to those with the Met allele. In a secondary analysis, the COMT x proline interaction also predicted symptoms measured via the Clinical Assessment Interview for Negative Symptoms (CAINS) total scores (n = 50, β-coefficient = 0.035, adjusted p = 0.044), although this result did not reach the Benjamini-Hochberg's threshold for significance. Further, there was a trend towards significance for an association with social and interpersonal function (Global Functioning-Social, coefficient = -0.005, adjusted p = 0.055). Negative symptoms are intractable and largely unaddressed by current medications. This study further supports a relationship between peripheral proline and COMT influencing negative symptoms such as anhedonia, in young CHR individuals and those with RO. That higher proline has converse effects on symptoms by COMT may have implications for the development of therapeutics to intervene early and specifically target the interaction pathway.

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