Institute of Anatomy II, Medical Faculty and University Hospital Düsseldorf, Heinrich-Heine-University, Universitätsstrasse 1, 40225 Düsseldorf, Germany.
Int J Mol Sci. 2021 Jul 28;22(15):8078. doi: 10.3390/ijms22158078.
ATP and other nucleotides are important glio-/neurotransmitters in the central nervous system. They bind to purinergic P2X and P2Y receptors that are ubiquitously expressed in various brain regions modulating various physiological and pathophysiological processes. P2X receptors are ligand-gated ion channels mediating excitatory postsynaptic responses whereas P2Y receptors are G protein-coupled receptors mediating slow synaptic transmission. A variety of P2X and P2Y subtypes with distinct neuroanatomical localization provide the basis for a high diversity in their function. There is increasing evidence that P2 receptor signaling plays a prominent role in learning and memory and thus, in hippocampal neuronal plasticity. Learning and memory are time-of-day-dependent. Moreover, extracellular ATP shows a diurnal rhythm in rodents. However, it is not known whether P2 receptors have a temporal variation in the hippocampus. This study provides a detailed systematic analysis on spatial and temporal distribution of P2 in the mouse hippocampus. We found distinct spatial and temporal distribution patterns of the P2 receptors in different hippocampal layers. The temporal distribution of P2 receptors can be segregated into two large time domains, the early to mid-day and the mid to late night. This study provides an important basis for understanding dynamic P2 purinergic signaling in the hippocampal glia/neuronal network.
三磷酸腺苷(ATP)和其他核苷酸是中枢神经系统中重要的神经递质。它们与嘌呤能 P2X 和 P2Y 受体结合,这些受体广泛表达于各种脑区,调节各种生理和病理生理过程。P2X 受体是配体门控离子通道,介导兴奋性突触后反应,而 P2Y 受体是 G 蛋白偶联受体,介导缓慢的突触传递。多种具有不同神经解剖定位的 P2X 和 P2Y 亚型为其功能的多样性提供了基础。越来越多的证据表明,P2 受体信号在学习和记忆中起重要作用,从而在海马神经元可塑性中起重要作用。学习和记忆是时间依赖性的。此外,在啮齿动物中,细胞外 ATP 表现出昼夜节律。然而,尚不清楚 P2 受体在海马体中是否存在时间变化。本研究对 P2 在小鼠海马中的时空分布进行了详细的系统分析。我们发现 P2 受体在不同海马层中的空间和时间分布模式存在明显差异。P2 受体的时间分布可分为两个大的时间域,即上午到中午和中午到深夜。本研究为理解海马胶质/神经元网络中动态 P2 嘌呤能信号提供了重要基础。