Canepari M, Nelson L, Papageorgiou G, Corrie J E, Ogden D
National Institute for Medical Research, The Ridgeway, Mill Hill, London NW7 1AA, UK.
J Neurosci Methods. 2001 Nov 15;112(1):29-42. doi: 10.1016/s0165-0270(01)00451-4.
Reagents capable of rapid and efficient release of neuroactive amino acids (L-glutamate, GABA and glycine) upon flash photolysis of thermally stable, inert precursors have been elusive. 7-Nitroindolinyl (NI)-caged and 4-methoxy-7-nitroindolinyl (MNI)-caged compounds that fulfil these criteria are evaluated here. These caged precursors are highly resistant to hydrolysis. Photolysis is fast (half time< or =0.26 ms) and the conversion achieved with a xenon flashlamp is about 15% for the NI-caged L-glutamate and about 35% for the MNI-caged L-glutamate. A procedure is described for calibration of photolysis in a microscope-based experimental apparatus. NI-caged L-glutamate itself showed no agonist or antagonist effects on AMPA and NMDA receptors in cultured neurones, and had no effect on climbing fibre activation of Purkinje neurones. A control compound with identical photochemistry that generated an inert phosphate upon photolysis was used to confirm that the intermediates and by-products of photolysis have no deleterious effects. MNI-caged L-glutamate is as stable and fast as NI-caged L-glutamate and similarly inert at glutamate receptors, but about 2.5 times more efficient. However, NI-caged GABA is an antagonist at GABA(A) receptors and NI-glycine an antagonist at glycine receptors. The results show the utility and limitations of these fast and stable caged neurotransmitters in the investigation of synaptic processes.
能够在热稳定的惰性前体发生闪光光解时快速高效释放神经活性氨基酸(L-谷氨酸、GABA和甘氨酸)的试剂一直难以找到。本文对符合这些标准的7-硝基吲哚啉基(NI)-笼形和4-甲氧基-7-硝基吲哚啉基(MNI)-笼形化合物进行了评估。这些笼形前体对水解具有高度抗性。光解速度很快(半衰期≤0.26毫秒),用氙闪光灯实现的转化率对于NI-笼形L-谷氨酸约为15%,对于MNI-笼形L-谷氨酸约为35%。描述了一种在基于显微镜的实验装置中校准光解的程序。NI-笼形L-谷氨酸本身对培养神经元中的AMPA和NMDA受体没有激动剂或拮抗剂作用,对浦肯野神经元的攀缘纤维激活也没有影响。使用一种具有相同光化学性质且在光解时产生惰性磷酸盐的对照化合物来确认光解的中间体和副产物没有有害影响。MNI-笼形L-谷氨酸与NI-笼形L-谷氨酸一样稳定且快速,在谷氨酸受体处同样呈惰性,但效率约高2.5倍。然而,NI-笼形GABA是GABA(A)受体的拮抗剂,NI-甘氨酸是甘氨酸受体的拮抗剂。结果显示了这些快速稳定的笼形神经递质在突触过程研究中的实用性和局限性。