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蛙视网膜中甘氨酸转运的药理学特性。

Pharmacological properties of glycine transport in the frog retina.

作者信息

Pérez-León Jorge A, López-Vera Estuardo, Salceda Rocío

机构信息

Departamento de Neurociencias, Instituto de Fisiología Celular, UNAM, México, DF.

出版信息

Neurochem Res. 2004 Jan;29(1):313-8. doi: 10.1023/b:nere.0000010460.34646.34.

Abstract

The high-affinity glycine transport in neurons and glial cells is the primary means for inactivating synaptic glycine. Two different glycine transporter genes, Glyt-1 and Glyt-2, have been cloned. Glyt-1 has been reported to occur in the retina, but there is no evidence for expression of the Glyt-2 transporter. We have pharmacologically characterized glycine transport in the frog retina. 3H-Glycine uptake in the retina was insensitive to modulation by phorbol esters or changes in cAMP levels, and was partially inhibited by sarcosine. Differential sensitivity of glycine transport to sarcosine was exhibited by synaptosomal fractions from the inner and outer plexiform layers of the frog retina. The Na+ Hill coefficient of glycine uptake was 2.0, as has been reported for Glyt-2. In addition, amoxapine, a specific inhibitor of the Glyt-2a isoform, reduced by 60% glycine uptake by P2 synaptosomal fraction. Our results indicate the presence of different glycine transporter isoforms in the frog retina, acting mainly through the classical inhibitory glycine system.

摘要

神经元和神经胶质细胞中的高亲和力甘氨酸转运是使突触甘氨酸失活的主要方式。已克隆出两种不同的甘氨酸转运体基因,即Glyt-1和Glyt-2。据报道,Glyt-1存在于视网膜中,但尚无证据表明存在Glyt-2转运体的表达。我们已从药理学角度对蛙视网膜中的甘氨酸转运进行了表征。视网膜中3H-甘氨酸的摄取对佛波酯的调节或cAMP水平的变化不敏感,且部分受到肌氨酸的抑制。蛙视网膜内、外丛状层的突触体组分对甘氨酸转运对肌氨酸表现出不同的敏感性。甘氨酸摄取的Na+希尔系数为2.0,这与报道的Glyt-2相同。此外,Glyt-2a亚型的特异性抑制剂阿莫沙平使P2突触体组分的甘氨酸摄取减少了60%。我们的结果表明,蛙视网膜中存在不同的甘氨酸转运体亚型,主要通过经典的抑制性甘氨酸系统发挥作用。

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