Gadea Ana, López Edith, López-Colomé Ana María
Instituto de Fisiología Celular, Departamento de Neurociencias, UNAM, México, DF, México.
Neurochem Res. 2004 Jan;29(1):295-304. doi: 10.1023/b:nere.0000010458.45085.e8.
Müller glial cells from the retina "in situ" and in primary culture, mainly express the high-affinity sodium-coupled glutamate/aspartate transporter GLAST-1, which dominates total retinal glutamate (Glu) uptake, suggesting a major role for these cells in the modulation of excitatory transmission. The possible involvement of ionotropic and metabotropic Glu receptors in the regulation of Glu uptake was studied in primary cultures of Müller glia. We demonstrate that exposure to 1 mM L-Glu induces a time-dependent inhibition of D-aspartate (D-Asp) uptake in a Na+-dependent manner, as a result of a reduction in the number of transporters at the plasma membrane. The inhibition of D-Asp uptake by Glu was not mimicked by agonists or modified by antagonists of ionotropic and metabotropic Glu receptors. In contrast, transport was inhibited by GLAST-1 transportable substrates threo-hydroxyaspartate and aspartate-beta-hydroxamate, but not by the nontransportable inhibitors trans-pyrrolidine dicarboxylate or DL-threo-beta-benzyloxyaspartic acid. Under the same experimental conditions, L-Glu did not affect the sodium-dependent transport systems for glycine or GABA. The present results demonstrate that the specific downregulation of glutamate/aspartate transport by L-Glu is unrelated to Glu receptor activation, and results from the internalization of transporter proteins triggered by the transport process itself. Such negative feedback of Glu on Glu transport, could contribute to retinal toxicity under pathological conditions in which high extracellular concentrations of Glu are reached.
视网膜“原位”及原代培养中的 Müller 胶质细胞主要表达高亲和力钠耦联谷氨酸/天冬氨酸转运体 GLAST-1,其主导视网膜总谷氨酸(Glu)摄取,提示这些细胞在调节兴奋性传递中起主要作用。在 Müller 胶质细胞原代培养中研究了离子型和代谢型 Glu 受体在 Glu 摄取调节中的可能作用。我们证明,暴露于 1 mM L-Glu 会以钠依赖方式诱导 D-天冬氨酸(D-Asp)摄取的时间依赖性抑制,这是由于质膜上转运体数量减少所致。Glu 对 D-Asp 摄取的抑制作用不能被离子型和代谢型 Glu 受体的激动剂模拟,也不受其拮抗剂的影响。相反,转运受到 GLAST-1 可转运底物苏糖型羟基天冬氨酸和天冬氨酸-β-羟肟酸的抑制,但不受不可转运抑制剂反式吡咯烷二羧酸或 DL-苏糖型-β-苄氧基天冬氨酸的抑制。在相同实验条件下,L-Glu 不影响甘氨酸或 GABA 的钠依赖转运系统。目前的结果表明,L-Glu 对谷氨酸/天冬氨酸转运的特异性下调与 Glu 受体激活无关,而是由转运过程本身触发的转运蛋白内化所致。Glu 对 Glu 转运的这种负反馈可能在达到高细胞外 Glu 浓度的病理条件下导致视网膜毒性。