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Glycine receptors in a population of adult mammalian cones

机译:成年哺乳动物视锥细胞中的甘氨酸受体

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摘要

Glycinergic interplexiform cells provide a feedback signal from the inner retina to the outer retina. To determine if cones receive such a signal, glycine was applied on cultured porcine cone photoreceptors recorded with the patch clamp technique. A minor population of cone photoreceptors was found to generate large currents in response to puff application of glycine. These currents reversed close to the calculated equilibrium potential for chloride ions. These glycine-elicited currents were sensitive to strychnine but not to picrotoxin consistent with the expression of α–β-heteromeric glycine receptors. Glycine receptors were also activated by taurine and β-alanine. The glycine receptor antibody mAb4a labelled a minority of the cone photoreceptors identified by an antibody specific for cone arrestin. Finally, expression of the β subunit of the glycine receptor was demonstrated by single cell RT-PCR in a similar proportion (∼13%) of cone photoreceptors freshly isolated by lectin-panning. The identity of cone photoreceptors was assessed by their specific expression of the cone arrestin mRNA. The population of cone photoreceptors expressing the glycine receptor was not correlated to a specific colour-sensitive subtype as demonstrated by single cell RT-PCR experiments using primers for S opsin, cone arrestin and glycine receptor β subunit. This glycine receptor expression in a minority of cones defines a new cone population suggesting an unexpected role for glycine in the visual information processing in the outer retina.
机译:甘氨酸能丛状细胞提供从内视网膜到外视网膜的反馈信号。为了确定视锥细胞是否接收到这样的信号,将甘氨酸应用于用膜片钳技术记录的培养的猪视锥细胞感光器。发现少量的视锥细胞感光细胞响应于抽吸甘氨酸而产生大电流。这些电流接近于计算出的氯离子平衡电位。这些甘氨酸引起的电流对士的宁敏感,但对与α-β-异聚甘氨酸受体表达一致的微毒素不敏感。甘氨酸受体也被牛磺酸和β-丙氨酸激活。甘氨酸受体抗体mAb4a标记了由视锥细胞抑制蛋白特异的抗体鉴定出的少数视锥细胞感光细胞。最后,通过单细胞RT-PCR证实甘氨酸受体β亚基的表达与凝集素淘选新鲜分离的视锥细胞感光细胞的比例相似(〜13%)。通过视锥光抑制蛋白mRNA的特异性表达来评估视锥光感受器的身份。如使用S视蛋白,视锥蛋白和甘氨酸受体β亚基的引物进行单细胞RT-PCR实验所证实,表达甘氨酸受体的视锥细胞感光细胞的数量与特定的颜色敏感亚型不相关。少数视锥中的这种甘氨酸受体表达定义了新的视锥种群,表明甘氨酸在外视网膜的视觉信息处理中具有意想不到的作用。

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