Mary Kate P Joyce, Dibyadeep Datta, Jon I Arellano, Alvaro Duque, Yury M Morozov, John H Morrison, Amy F T Arnsten
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However, NMDAR-GluN2B can also be found at extrasynaptic sites, where they may trigger distinct events, including some linked to neurodegenerative processes. The SGC is an early site of tau pathology in sporadic Alzheimer's disease (sAD), which mirrors its high NMDAR-GluN2B expression. Additionally, the SGC is hyperactive in depression, which can be treated with NMDAR antagonists. Given the clinical relevance of NMDAR in the SGC and dlPFC, the current study used immunoelectron microscopy (immunoEM) to quantitatively compare the synaptic and extrasynaptic expression patterns of NMDAR-GluN2B across excitatory and inhibitory neuron dendrites in rhesus macaque layer III SGC and dlPFC. We found a larger population of extrasynaptic NMDAR-GluN2B in dendrites of putative pyramidal neurons in SGC as compared to the dlPFC, while the dlPFC had a higher proportion of synaptic NMDAR-GluN2B. In contrast, in putative inhibitory dendrites from both areas, extrasynaptic expression of NMDAR-GluN2B was far more frequently observed over synaptic expression. 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引用次数: 0
摘要
n -甲基- d -天冬氨酸受体的表达,特别是当含有GluN2B亚基(NMDAR-GluN2B)时,在前额皮质(PFC)中有所不同。在人类中,亚属扣带皮层(SGC)含有最高水平的nmda - glun2b表达,而背外侧前额叶皮层(dlPFC)的nmda - glun2b表达水平较中等。NMDAR-GluN2B通常与嗜离子性突触功能和可塑性有关,并且对猕猴dlPFC III层电路中工作记忆的神经传递至关重要,而人类则患有精神分裂症。然而,NMDAR-GluN2B也可以在突触外位点发现,在那里它们可能触发不同的事件,包括一些与神经退行性过程相关的事件。SGC是散发性阿尔茨海默病(sAD)中tau病理的早期位点,这反映了它的高NMDAR-GluN2B表达。此外,SGC在抑郁症中过度活跃,这可以用NMDAR拮抗剂治疗。鉴于NMDAR在SGC和dlPFC中的临床相关性,本研究使用免疫电镜(immunoEM)定量比较了NMDAR- glun2b在恒河猴III层SGC和dlPFC中兴奋性和抑制性神经元树突上的突触和突触外表达模式。我们发现,与dlPFC相比,SGC中假定的锥体神经元树突中有更多的突触外nmda - glun2b,而dlPFC中有更高比例的突触性nmda - glun2b。相比之下,在两个区域的推定抑制性树突中,NMDAR-GluN2B的突触外表达比突触表达更频繁。这些发现可能有助于了解皮层对兴奋性和神经退行性力量改变的不同易感性。
Contrasting patterns of extrasynaptic NMDAR-GluN2B expression in macaque subgenual cingulate and dorsolateral prefrontal cortices.
Expression of the N-methyl-D-aspartate receptor, particularly when containing the GluN2B subunit (NMDAR-GluN2B), varies across the prefrontal cortex (PFC). In humans, the subgenual cingulate cortex (SGC) contains among the highest levels of NMDAR-GluN2B expression, while the dorsolateral prefrontal cortex (dlPFC) exhibits a more moderate level of NMDAR-GluN2B expression. NMDAR-GluN2B are commonly associated with ionotropic synaptic function and plasticity and are essential to the neurotransmission underlying working memory in the macaque dlPFC in the layer III circuits, which in humans are afflicted in schizophrenia. However, NMDAR-GluN2B can also be found at extrasynaptic sites, where they may trigger distinct events, including some linked to neurodegenerative processes. The SGC is an early site of tau pathology in sporadic Alzheimer's disease (sAD), which mirrors its high NMDAR-GluN2B expression. Additionally, the SGC is hyperactive in depression, which can be treated with NMDAR antagonists. Given the clinical relevance of NMDAR in the SGC and dlPFC, the current study used immunoelectron microscopy (immunoEM) to quantitatively compare the synaptic and extrasynaptic expression patterns of NMDAR-GluN2B across excitatory and inhibitory neuron dendrites in rhesus macaque layer III SGC and dlPFC. We found a larger population of extrasynaptic NMDAR-GluN2B in dendrites of putative pyramidal neurons in SGC as compared to the dlPFC, while the dlPFC had a higher proportion of synaptic NMDAR-GluN2B. In contrast, in putative inhibitory dendrites from both areas, extrasynaptic expression of NMDAR-GluN2B was far more frequently observed over synaptic expression. These findings may provide insight into varying cortical vulnerability to alterations in excitability and neurodegenerative forces.
期刊介绍:
Frontiers in Neuroanatomy publishes rigorously peer-reviewed research revealing important aspects of the anatomical organization of all nervous systems across all species. Specialty Chief Editor Javier DeFelipe at the Cajal Institute (CSIC) is supported by an outstanding Editorial Board of international experts. This multidisciplinary open-access journal is at the forefront of disseminating and communicating scientific knowledge and impactful discoveries to researchers, academics, clinicians and the public worldwide.