Kurenny D E, Moroz L L, Turner R W, Sharkey K A, Barnes S
Neuroscience Research Group University of Calgary, Alberta, Canada.
Neuron. 1994 Aug;13(2):315-24. doi: 10.1016/0896-6273(94)90349-2.
Subcellular compartments in the outer retina of the larval tiger salamander were identified as likely sites of production of nitric oxide (NO), a recently recognized intercellular messenger. NADPH diaphorase histochemistry and NO synthase immunocytochemistry labeled photoreceptor ellipsoids and the distal regions of bipolar and glial cells apposing photoreceptor inner segments, suggesting a role for NO in visual processing in the outer retina. We investigated the actions of NO on several rod photoreceptor ion channels. Application of the NO-generating compound S-nitrosocysteine increased Ca2+ channel current and a voltage-independent conductance, but had no affect on voltage-gated K+ or nonspecific cation currents. Given the steep relation between voltage-dependent Ca2+ influx and photoreceptor synaptic output, these results indicate that NO could modulate transmission of the photoresponse to second order cells.
在虎螈幼体的外视网膜中,亚细胞区室被确定为一氧化氮(NO,一种最近被认可的细胞间信使)可能的产生部位。NADPH黄递酶组织化学和一氧化氮合酶免疫细胞化学标记了光感受器椭球体以及与光感受器内段相邻的双极细胞和神经胶质细胞的远端区域,这表明NO在外视网膜的视觉处理中发挥作用。我们研究了NO对几种视杆光感受器离子通道的作用。应用产生NO的化合物S-亚硝基半胱氨酸可增加Ca2+通道电流和一种电压非依赖性电导,但对电压门控K+电流或非特异性阳离子电流没有影响。鉴于电压依赖性Ca2+内流与光感受器突触输出之间的陡峭关系,这些结果表明NO可能调节光反应向二级细胞的传递。