首页> 外文期刊>The Journal of Physiology >Niflumic acid modulates uncoupled substrate-gated conductances in the human glutamate transporter EAAT4.
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Niflumic acid modulates uncoupled substrate-gated conductances in the human glutamate transporter EAAT4.

机译:尼氟酸调节人谷氨酸转运蛋白EAAT4中未偶联的底物门控电导。

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1. The effects of niflumic acid on the substrate-gated currents mediated by the glutamate transporter EAAT4 expressed in Xenopus laevis oocytes were examined using radiolabelled substrate flux measurements and two-electrode voltage clamp techniques. 2. Niflumic acid significantly enhanced the substrate-gated currents in EAAT4, without affecting the affinity of the substrates towards EAAT4. At a concentration of 300 microM, niflumic acid caused a 19 +/- 5 % reduction in L-[(3)H]glutamate uptake and no significant effect on the uptake of DL-[(3)H]aspartate. Thus, enhancement of the substrate-gated currents in EAAT4 does not correlate with the rate of substrate transport and suggests that the niflumic acid-induced currents are not thermodynamically coupled to the transport of substrate. 3. Niflumic acid and arachidonic acid co-applied with substrate to EAAT4-expressing oocytes had similar functional consequences. However, niflumic acid still enhanced the L-glutamate-gated current to the same extent in the presence and absence of a saturating dose of arachidonic acid, which suggests that the sites of action of the two compounds are distinct. 4. The EAAT4-mediated currents for the two substrates, L-glutamate and L-aspartate, were not enhanced equally by addition of the same dose of niflumic acid and the ionic composition of the niflumic acid-induced currents was not the same for the two substrates. Protons carry the L-glutamate-gated niflumic acid-induced current and both protons and chloride ions carry the L-aspartate-gated niflumic acid-induced current. 5. These results show that niflumic acid can be used to probe the functional aspects of EAAT4 and that niflumic acid and other non-steroid anti-inflammatory drugs could be used as the basis for the development of novel modulators of glutamate transporters.
机译:1.使用放射性标记的底物通量测量和两电极电压钳技术检测了尼氟酸对非洲爪蟾卵母细胞中表达的谷氨酸转运蛋白EAAT4介导的底物门控电流的影响。 2.尼氟酸显着增强了EAAT4中底物门控电流,而不影响底物对EAAT4的亲和力。在300 microM的浓度下,尼氟酸引起L-[(3)H]谷氨酸的摄取降低19 +/- 5%,对DL-[(3)H]天冬氨酸的摄取没有明显影响。因此,EAAT4中底物门控电流的增加与底物运输的速率不相关,表明硝氟酸诱导的电流与底物的运输不是热力学耦合的。 3.尼氟酸和花生四烯酸与底物共同应用于表达EAAT4的卵母细胞具有相似的功能后果。然而,在存在和不存在饱和剂量的花生四烯酸的情况下,尼氟酸仍将L-谷氨酸门控电流增强至相同程度,这表明两种化合物的作用位点是不同的。 4.两种底物L-谷氨酸和L-天门冬氨酸的EAAT4介导的电流不能通过加入相同剂量的尼氟酸而得到相同的增强,并且尼氟酸诱导的电流的离子组成对于相同浓度的尼古丁不一样。两个基板。质子携带L-谷氨酸门控烟酰胺酸诱导的电流,并且质子和氯离子两者携带L-天门冬氨酸门控烟酰胺酸诱导的电流。 5.这些结果表明,尼氟酸可用于探查EAAT4的功能方面,尼氟酸和其他非甾体抗炎药可作为开发新型谷氨酸转运蛋白调节剂的基础。

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