Trümpler Jennifer, Dedek Karin, Schubert Timm, de Sevilla Müller Luis Pérez, Seeliger Mathias, Humphries Peter, Biel Martin, Weiler Reto
Department of Neurobiology, Carl von Ossietzky University, D-26111 Oldenburg, Germany.
J Neurosci. 2008 Jul 2;28(27):6818-25. doi: 10.1523/JNEUROSCI.1564-08.2008.
Mammalian B-type horizontal cells make contact with both photoreceptor types: the dendrites contact cone photoreceptors, whereas the axon terminal processes contact rods. Despite their distinct synaptic contacts, horizontal cell somata and axon terminals receive a mixture of rod and cone inputs. Interaction of the two photoreceptor systems is essential for adaptation of photoreceptor sensitivity to different levels of background illumination, and horizontal cells play a key role in this adaptation. In this study, we used transgenic mouse lines to examine the contributions of rod and cone photoreceptor inputs to horizontal cell light responses in the mouse retina: rod signals were isolated by recording intracellularly from horizontal cells in a mouse lacking the cone cyclic nucleotide-gated channel, which lacks cone function, and cone signals were assessed using the rhodopsin knock-out mouse, which is a model for pure cone function. We found that both horizontal cell compartments receive a mixture of inputs from both photoreceptor types. To determine whether these inputs arrive via the long axon connecting the compartments or by way of rod-cone gap junctional coupling, we assessed the rod and cone contributions to horizontal cell somatic and axon terminal light responses in the connexin36-deficient mouse retina, which lacks rod-cone coupling. Our results confirm that rods and cones are coupled by connexin36, and suggest that signal transmission along the axon is unidirectional: signals are passed from horizontal cell soma to axon terminal but not from axon terminal to soma.
哺乳动物的B型水平细胞与两种光感受器都有接触:其树突与视锥光感受器接触,而轴突终末与视杆接触。尽管它们的突触接触不同,但水平细胞的胞体和轴突终末都接收视杆和视锥输入的混合信号。两个光感受器系统的相互作用对于光感受器对不同背景光照水平的敏感度适应至关重要,而水平细胞在这种适应过程中起关键作用。在本研究中,我们使用转基因小鼠品系来研究视杆和视锥光感受器输入对小鼠视网膜水平细胞光反应的贡献:通过在缺乏视锥环核苷酸门控通道(因而缺乏视锥功能)的小鼠中对水平细胞进行细胞内记录来分离视杆信号,并用视紫红质敲除小鼠(这是一个纯视锥功能模型)来评估视锥信号。我们发现水平细胞的两个部分都接收来自两种光感受器类型的混合输入。为了确定这些输入是通过连接这两个部分的长轴突到达,还是通过视杆 - 视锥间隙连接耦合方式到达,我们在缺乏视杆 - 视锥耦合的连接蛋白36缺陷型小鼠视网膜中评估了视杆和视锥对水平细胞胞体和轴突终末光反应的贡献。我们的结果证实视杆和视锥通过连接蛋白36耦合,并表明沿轴突的信号传递是单向的:信号从水平细胞胞体传递到轴突终末,而不是从轴突终末传递到胞体。