Impaired neural stress resistance and loss of REST in bipolar disorder
Katharina Meyer1, King-Hwa Ling1, Pei-Ling Yeo1
1Department of Genetics, Harvard Medical School, Boston, MA, 02115, USA.
Abstract:
Neurodevelopmental changes and impaired stress resistance have been implicated in the pathogenesis of bipolar disorder (BD), but the underlying regulatory mechanisms are unresolved. Here we describe a human cerebral organoid model of BD that exhibits altered neural development, elevated neural network activity, and a major shift in the transcriptome. These phenotypic changes were reproduced in cerebral organoids generated from iPS cell lines derived in different laboratories. The BD cerebral organoid transcriptome showed highly significant enrichment for gene targets of the transcriptional repressor REST. This was associated with reduced nuclear REST and REST binding to target gene recognition sites. Reducing the oxygen concentration in organoid cultures to a physiological range ameliorated the developmental phenotype and restored REST expression. These effects were mimicked by treatment with lithium. Reduced nuclear REST and derepression of REST targets genes were also observed in the prefrontal cortex of BD patients. Thus, an impaired cellular stress response in BD cerebral organoids leads to altered neural development and transcriptional dysregulation associated with downregulation of REST. These findings provide a new model and conceptual framework for exploring the molecular basis of BD.
Related Concept Videos
Bipolar Disorder
Mania and Antimanic Drugs: Overview
Stress and Mental Health
Individuals with depression often experience challenges in both their personal and professional...
Depression: Overview
Borderline Personality Disorder
Genetic and Environmental Contributions
Borderline Personality...
Psychoneuroimmunology: Cardiovascular Disease
A key area of focus in PNI is the relationship between stress and coronary...


