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NMDA 受体在神经动力学的树突整合中的多样化作用。

Diverse role of NMDA receptors for dendritic integration of neural dynamics.

机构信息

Institute for Artificial Intelligence, Department of Computer Science and Technology, Peking University, Beijing, China.

Guangzhou Institute of Technology, Xidian University, Guangzhou, China.

出版信息

PLoS Comput Biol. 2023 Apr 10;19(4):e1011019. doi: 10.1371/journal.pcbi.1011019. eCollection 2023 Apr.

Abstract

Neurons, represented as a tree structure of morphology, have various distinguished branches of dendrites. Different types of synaptic receptors distributed over dendrites are responsible for receiving inputs from other neurons. NMDA receptors (NMDARs) are expressed as excitatory units, and play a key physiological role in synaptic function. Although NMDARs are widely expressed in most types of neurons, they play a different role in the cerebellar Purkinje cells (PCs). Utilizing a computational PC model with detailed dendritic morphology, we explored the role of NMDARs at different parts of dendritic branches and regions. We found somatic responses can switch from silent, to simple spikes and complex spikes, depending on specific dendritic branches. Detailed examination of the dendrites regarding their diameters and distance to soma revealed diverse response patterns, yet explain two firing modes, simple and complex spike. Taken together, these results suggest that NMDARs play an important role in controlling excitability sensitivity while taking into account the factor of dendritic properties. Given the complexity of neural morphology varying in cell types, our work suggests that the functional role of NMDARs is not stereotyped but highly interwoven with local properties of neuronal structure.

摘要

神经元以形态学的树状结构表示,具有各种不同的树突分支。分布在树突上的不同类型的突触受体负责接收来自其他神经元的输入。NMDA 受体(NMDARs)作为兴奋性单位表达,在突触功能中起着关键的生理作用。尽管 NMDARs 在大多数类型的神经元中广泛表达,但它们在小脑浦肯野细胞(PCs)中发挥着不同的作用。利用具有详细树突形态的计算 PC 模型,我们探索了 NMDARs 在树突分支和区域的不同部位的作用。我们发现,根据特定的树突分支,体部反应可以从沉默状态切换到简单峰和复杂峰。对树突的直径和与体部的距离进行详细检查,揭示了不同的反应模式,但解释了两种发射模式,即简单峰和复杂峰。总之,这些结果表明,NMDARs 在考虑树突特性因素的情况下,在控制兴奋性敏感性方面发挥着重要作用。考虑到细胞类型中神经形态的复杂性,我们的工作表明,NMDAR 的功能作用不是刻板的,而是与神经元结构的局部特性高度交织在一起的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd3a/10085026/b23779600fd7/pcbi.1011019.g001.jpg

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