Queensland Brain Institute, The University of Queensland, Brisbane, Queensland QLD 4072, Australia.
Nat Commun. 2017 Jun 7;8:15683. doi: 10.1038/ncomms15683.
The retina processes visual images to compute features such as the direction of image motion. Starburst amacrine cells (SACs), axonless feed-forward interneurons, are essential components of the retinal direction-selective circuitry. Recent work has highlighted that SAC-mediated dendro-dendritic inhibition controls the action potential output of direction-selective ganglion cells (DSGCs) by vetoing dendritic spike initiation. However, SACs co-release GABA and the excitatory neurotransmitter acetylcholine at dendritic sites. Here we use direct dendritic recordings to show that preferred direction light stimuli evoke SAC-mediated acetylcholine release, which powerfully controls the stimulus sensitivity, receptive field size and action potential output of ON-DSGCs by acting as an excitatory drive for the initiation of dendritic spikes. Consistent with this, paired recordings reveal that the activation of single ON-SACs drove dendritic spike generation, because of predominate cholinergic excitation received on the preferred side of ON-DSGCs. Thus, dendro-dendritic release of neurotransmitters from SACs bi-directionally gate dendritic spike initiation to control the directionally selective action potential output of retinal ganglion cells.
视网膜处理视觉图像以计算图像运动方向等特征。星爆型无轴突前馈中间神经元(SAC)是视网膜方向选择性电路的重要组成部分。最近的研究强调,SAC 介导的树突-树突抑制通过否决树突棘发起控制方向选择性节细胞(DSGC)的动作电位输出。然而,SAC 在树突部位共同释放 GABA 和兴奋性神经递质乙酰胆碱。在这里,我们使用直接树突记录显示,优先方向光刺激引发 SAC 介导的乙酰胆碱释放,通过作为树突棘发起的兴奋性驱动,有力地控制 ON-DSGCs 的刺激敏感性、感受野大小和动作电位输出。与此一致的是,成对记录显示,单个 ON-SAC 的激活驱动了树突棘的产生,因为 ON-DSGCs 的优先侧接收到占主导地位的胆碱能兴奋。因此,SAC 从树突释放的神经递质双向门控树突棘发起,以控制视网膜节细胞的方向选择性动作电位输出。