Liu Xiaoyan, Liu Can, Ye Jiamin, Zhang Shuzhuo, Wang Kai, Su Ruibin
State Key Laboratory of Toxicology and Medical Countermeasures, Beijing Key Laboratory of Neuropsychopharmacology, Beijing Institute of Pharmacology and Toxicology, Beijing, China.
School of Pharmacy, North China University of Science and Technology, Tangshan, China.
Front Cell Neurosci. 2020 Jul 7;14:205. doi: 10.3389/fncel.2020.00205. eCollection 2020.
Although acid-sensing ion channels (ASICs) are widely expressed in the central nervous system, their distribution and roles in axonal growth cones remain unclear. In this study, we examined ASIC localization and function in the axonal growth cones of cultured immature hippocampal neurons. Our immunocytochemical data showed that native and overexpressed ASIC1a and ASIC2a are both localized in growth cones of cultured young hippocampal neurons. Calcium imaging and electrophysiological assay results were utilized to validate their function. The calcium imaging test results indicated that the ASICs (primarily ASIC1a) present in growth cones mediate calcium influx despite the addition of voltage-gated Ca channels antagonists and the depletion of intracellular calcium stores. The electrophysiological tests results suggested that a rapid decrease in extracellular pH at the growth cones of voltage-clamped neurons elicits inward currents that were blocked by bath application of the ASIC antagonist amiloride, showing that the ASICs expressed at growth cones are functional. The subsequent immuno-colocalization test results demonstrated that ASIC1a and ASIC2a are both colocalized with Neurofilament-H and Bassoon in mature hippocampal neurons. This finding demonstrated that after reaching maturity, ASIC1a and ASIC2a are both distributed in axons and the presynaptic membrane. Our data reveal the distribution of functional ASICs in growth cones of immature hippocampal neurons and the presence of ASICs in the axons and presynaptic membrane of mature hippocampal neurons, indicating a possible role for ASICs in axonal guidance, synapse formation and neurotransmitter release.
尽管酸敏感离子通道(ASICs)在中枢神经系统中广泛表达,但其在轴突生长锥中的分布和作用仍不清楚。在本研究中,我们检测了ASICs在培养的未成熟海马神经元轴突生长锥中的定位和功能。我们的免疫细胞化学数据显示,天然和过表达的ASIC1a和ASIC2a均定位于培养的年轻海马神经元的生长锥中。利用钙成像和电生理检测结果来验证它们的功能。钙成像测试结果表明,尽管添加了电压门控钙通道拮抗剂并耗尽了细胞内钙库,但生长锥中存在的ASICs(主要是ASIC1a)介导钙内流。电生理测试结果表明,电压钳制神经元生长锥处细胞外pH的快速下降会引发内向电流,该电流可被浴用ASIC拮抗剂阿米洛利阻断,表明生长锥中表达的ASICs具有功能。随后的免疫共定位测试结果表明,ASIC1a和ASIC2a在成熟海马神经元中均与神经丝-H和巴松管共定位。这一发现表明,成熟后,ASIC1a和ASIC2a均分布于轴突和突触前膜。我们的数据揭示了功能性ASICs在未成熟海马神经元生长锥中的分布以及ASICs在成熟海马神经元轴突和突触前膜中的存在,表明ASICs在轴突导向、突触形成和神经递质释放中可能发挥作用。