Sagdullaev Botir T, McCall Maureen A, Lukasiewicz Peter D
Department of Ophthalmology and Visual Sciences, Washington University School of Medicine, 660 South Euclid Avenue, St. Louis, Missouri 63110, USA.
Neuron. 2006 Jun 15;50(6):923-35. doi: 10.1016/j.neuron.2006.05.015.
Sensory information is thought to be modulated by presynaptic inhibition. Although this form of inhibition is a well-studied phenomenon, it is still unclear what role it plays in shaping sensory signals in intact circuits. By visually stimulating the retinas of transgenic mice lacking GABAc receptor-mediated presynaptic inhibition, we found that this inhibition regulated the dynamic range of ganglion cell (GC) output to the brain. Presynaptic inhibition acted differentially upon two major retinal pathways; its elimination affected GC responses to increments, but not decrements, in light intensity across the visual scene. The GC dynamic response ranges were different because presynaptic inhibition limited glutamate release from ON, but not OFF, bipolar cells, which modulate the extent of glutamate spillover and activation of perisynaptic NMDA receptors at ON GCs. Our results establish a role for presynaptic inhibitory control of spillover in determining sensory output in the CNS.
感觉信息被认为是由突触前抑制调节的。虽然这种抑制形式是一个经过充分研究的现象,但它在完整回路中塑造感觉信号时所起的作用仍不清楚。通过视觉刺激缺乏GABAc受体介导的突触前抑制的转基因小鼠的视网膜,我们发现这种抑制调节了神经节细胞(GC)向大脑输出的动态范围。突触前抑制对两条主要的视网膜通路有不同的作用;其消除影响了GC对视觉场景中光强度增加的反应,但不影响对光强度降低的反应。GC的动态反应范围不同,因为突触前抑制限制了ON双极细胞而非OFF双极细胞释放谷氨酸,而ON双极细胞调节谷氨酸溢出的程度以及ON型GC上突触周围NMDA受体的激活。我们的结果确立了突触前对溢出的抑制控制在中枢神经系统中决定感觉输出方面的作用。