Department of Biomedical Engineering, Baltimore, MD, USA; Department of Psychiatry, Baltimore, MD, USA.
Department of Psychiatry, Baltimore, MD, USA.
Neuron. 2023 Jan 18;111(2):220-235.e9. doi: 10.1016/j.neuron.2022.10.031. Epub 2022 Nov 14.
Schizophrenia (SZ) and bipolar disorder (BP) are highly heritable major psychiatric disorders that share a substantial portion of genetic risk as well as their clinical manifestations. This raises a fundamental question of whether, and how, common neurobiological pathways translate their shared polygenic risks into shared clinical manifestations. This study shows the miR-124-3p-AMPAR pathway as a key common neurobiological mediator that connects polygenic risks with behavioral changes shared between these two psychotic disorders. We discovered the upregulation of miR-124-3p in neuronal cells and the postmortem prefrontal cortex from both SZ and BP patients. Intriguingly, the upregulation is associated with the polygenic risks shared between these two disorders. Seeking mechanistic dissection, we generated a mouse model that upregulates miR-124-3p in the medial prefrontal cortex. We demonstrated that the upregulation of miR-124-3p increases GRIA2-lacking calcium-permeable AMPARs and perturbs AMPAR-mediated excitatory synaptic transmission, leading to deficits in the behavioral dimensions shared between SZ and BP.
精神分裂症(SZ)和双相情感障碍(BP)是高度遗传性的主要精神疾病,它们具有大量的遗传风险,并且具有相似的临床表现。这就提出了一个基本问题,即共同的神经生物学途径是否以及如何将其共同的多基因风险转化为共同的临床表现。本研究表明,miR-124-3p-AMPA 途径是一种关键的共同神经生物学介质,它将多基因风险与这两种精神病性障碍之间的行为变化联系起来。我们发现,神经元细胞和 SZ 和 BP 患者死后的前额叶皮层中 miR-124-3p 上调。有趣的是,这种上调与这两种疾病之间的共同多基因风险有关。为了进行机制分析,我们构建了一种在额内侧皮质中上调 miR-124-3p 的小鼠模型。我们证明,miR-124-3p 的上调增加了缺乏 GRIA2 的钙通透性 AMPAR,并扰乱了 AMPAR 介导的兴奋性突触传递,导致 SZ 和 BP 之间共享的行为维度缺陷。