Thoreson Wallace B, Babai Norbert, Bartoletti Theodore M
Department of Ophthalmology and Visual Science, University of Nebraska Medical Center, Omaha, Nebraska 68198, USA.
J Neurosci. 2008 May 28;28(22):5691-5. doi: 10.1523/JNEUROSCI.0403-08.2008.
Retinal horizontal cells (HCs) provide negative feedback to cones, but, largely because annular illumination fails to evoke a depolarizing response in rods, it is widely believed that there is no feedback from HCs to rods. However, feedback from HCs to cones involves small changes in the calcium current (I(Ca)) that do not always generate detectable depolarizing responses. We therefore recorded I(Ca) directly from rods to test whether they were modulated by feedback from HCs. To circumvent problems presented by overlapping receptive fields of HCs and rods, we manipulated the membrane potential of voltage-clamped HCs while simultaneously recording from rods in a salamander retinal slice preparation. Like HC feedback in cones, hyperpolarizing HCs from -14 to -54, -84, and -104 mV increased the amplitude of I(Ca) recorded from synaptically connected rods and caused hyperpolarizing shifts in I(Ca) voltage dependence. These effects were blocked by supplementing the bicarbonate-buffered saline solution with HEPES. In rods lacking light-responsive outer segments, hyperpolarizing neighboring HCs with light caused a negative activation shift and increased the amplitude of I(Ca). These changes in I(Ca) were blocked by HEPES and by inhibiting HC light responses with a glutamate antagonist, indicating that they were caused by HC feedback. These results show that rods, like cones, receive negative feedback from HCs that regulates the amplitude and voltage dependence of I(Ca). HC-to-rod feedback counters light-evoked decreases in synaptic output and thus shapes the transmission of rod responses to downstream visual neurons.
视网膜水平细胞(HCs)向视锥细胞提供负反馈,但很大程度上由于环形照明未能在视杆细胞中引发去极化反应,人们普遍认为不存在从HCs到视杆细胞的反馈。然而,HCs到视锥细胞的反馈涉及钙电流(I(Ca))的微小变化,这些变化并不总是产生可检测到的去极化反应。因此,我们直接从视杆细胞记录I(Ca),以测试它们是否受到HCs反馈的调节。为了规避HCs和视杆细胞重叠感受野带来的问题,我们在蝾螈视网膜切片标本中,在从视杆细胞记录的同时操纵电压钳制的HCs的膜电位。与视锥细胞中的HCs反馈一样,将HCs从 -14 mV超极化到 -54 mV、-84 mV和 -104 mV,会增加从突触连接的视杆细胞记录到的I(Ca)的幅度,并导致I(Ca)电压依赖性的超极化偏移。通过在碳酸氢盐缓冲盐溶液中添加HEPES可阻断这些效应。在缺乏光响应性外段的视杆细胞中,用光使相邻的HCs超极化会导致负激活偏移并增加I(Ca)的幅度。I(Ca)中的这些变化被HEPES以及用谷氨酸拮抗剂抑制HCs光反应所阻断,表示它们是由HCs反馈引起的。这些结果表明,视杆细胞与视锥细胞一样,接受来自HCs的负反馈,该反馈调节I(Ca)的幅度和电压依赖性。HCs到视杆细胞的反馈抵消了光诱发的突触输出减少,从而塑造了视杆细胞反应向下游视觉神经元的传递。