视网膜中神经元缝隙连接的多种功能作用及调节
The diverse functional roles and regulation of neuronal gap junctions in the retina.
作者信息
Bloomfield Stewart A, Völgyi Béla
机构信息
Department of Physiology & Neuroscience, New York University School of Medicine, 550 First Avenue, New York, New York 10016, USA.
出版信息
Nat Rev Neurosci. 2009 Jul;10(7):495-506. doi: 10.1038/nrn2636. Epub 2009 Jun 3.
Electrical synaptic transmission through gap junctions underlies direct and rapid neuronal communication in the CNS. The diversity of functional roles that electrical synapses have is perhaps best exemplified in the vertebrate retina, in which gap junctions are formed by each of the five major neuron types. These junctions are dynamically regulated by ambient illumination and by circadian rhythms acting through light-activated neuromodulators such as dopamine and nitric oxide, which in turn activate intracellular signalling pathways in the retina.The networks formed by electrically coupled neurons are plastic and reconfigurable, and those in the retina are positioned to play key and diverse parts in the transmission and processing of visual information at every retinal level.
通过缝隙连接进行的电突触传递是中枢神经系统中直接且快速的神经元通讯的基础。电突触所具有的功能作用的多样性或许在脊椎动物视网膜中体现得最为淋漓尽致,在脊椎动物视网膜中,五种主要神经元类型中的每一种都会形成缝隙连接。这些连接受到环境光照以及通过多巴胺和一氧化氮等光激活神经调节剂发挥作用的昼夜节律的动态调节,而这些神经调节剂又会依次激活视网膜中的细胞内信号通路。由电耦合神经元形成的网络具有可塑性且可重新配置,视网膜中的网络在视网膜的各个层面上,都在视觉信息的传递和处理过程中发挥着关键且多样的作用。