Gulledge Allan T, Stuart Greg J
Division of Neuroscience, John Curtin School of Medical Research, Australian National University, Mills Road, Canberra, ACT 0200, Australia.
Neuron. 2003 Jan 23;37(2):299-309. doi: 10.1016/s0896-6273(02)01146-7.
Little is known about how GABAergic inputs interact with excitatory inputs under conditions that maintain physiological concentrations of intracellular anions. Using extracellular and gramicidin perforated-patch recording, we show that somatic and dendritic GABA responses in mature cortical pyramidal neurons are depolarizing from rest and can facilitate action potential generation when combined with proximal excitatory input. Dendritic GABA responses were excitatory regardless of timing, whereas somatic GABA responses were inhibitory when coincident with excitatory input but excitatory at earlier times. These excitatory actions of GABA occur even though the GABA reversal potential is below action potential threshold and largely uniform across the somato-dendritic axis, and arise when GABAergic inputs are temporally or spatially isolated from concurrent excitation. Our findings demonstrate that under certain circumstances GABA will have an excitatory role in synaptic integration in the cortex.
在维持细胞内阴离子生理浓度的条件下,关于γ-氨基丁酸(GABA)能输入如何与兴奋性输入相互作用,我们所知甚少。利用细胞外和短杆菌肽穿孔膜片钳记录技术,我们发现成熟皮质锥体神经元的胞体和树突GABA反应在静息时呈去极化,并且当与近端兴奋性输入相结合时可促进动作电位的产生。树突GABA反应无论时间如何均为兴奋性,而胞体GABA反应在与兴奋性输入同时出现时为抑制性,但在更早的时间则为兴奋性。即使GABA反转电位低于动作电位阈值且在胞体-树突轴上基本一致,GABA的这些兴奋性作用仍然会出现,并且当GABA能输入在时间或空间上与同时发生的兴奋相隔离时就会产生。我们的研究结果表明,在某些情况下,GABA在皮质的突触整合中具有兴奋性作用。