Deans Michael R, Volgyi Bela, Goodenough Daniel A, Bloomfield Stewart A, Paul David L
Department of Neurobiology, Harvard Medical School, 200 Longwood Avenue, Boston, MA 02115, USA.
Neuron. 2002 Nov 14;36(4):703-12. doi: 10.1016/s0896-6273(02)01046-2.
To examine the functions of electrical synapses in the transmission of signals from rod photoreceptors to ganglion cells, we generated connexin36 knockout mice. Reporter expression indicated that connexin36 was present in multiple retinal neurons including rod photoreceptors, cone bipolar cells, and AII amacrine cells. Disruption of electrical synapses between adjacent AIIs and between AIIs and ON cone bipolars was demonstrated by intracellular injection of Neurobiotin. In addition, extracellular recording in the knockout revealed the complete elimination of rod-mediated, on-center responses at the ganglion cell level. These data represent direct proof that electrical synapses are critical for the propagation of rod signals across the mammalian retina, and they demonstrate the existence of multiple rod pathways, each of which is dependent on electrical synapses.
为了研究电突触在从视杆光感受器向神经节细胞传递信号中的作用,我们培育了连接蛋白36基因敲除小鼠。报告基因表达表明,连接蛋白36存在于包括视杆光感受器、视锥双极细胞和AII无长突细胞在内的多种视网膜神经元中。通过细胞内注射神经生物素证明了相邻AII之间以及AII与ON视锥双极细胞之间电突触的破坏。此外,基因敲除小鼠的细胞外记录显示,在神经节细胞水平上,视杆介导的中心兴奋反应完全消失。这些数据直接证明电突触对于视杆信号在哺乳动物视网膜中的传播至关重要,并且它们证明了存在多条视杆通路,每条通路都依赖于电突触。