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嘌呤受体拮抗剂苏拉明和吡哆醛-5'-磷酸-6-(2'-萘基偶氮-6'-硝基-4',8'-二磺酸盐)(PPNDS)对α-氨基-3-羟基-5-甲基-4-异恶唑丙酸(AMPA)受体的不同作用。

Divergent effects of the purinoceptor antagonists suramin and pyridoxal-5'-phosphate-6-(2'-naphthylazo-6'-nitro-4',8'-disulfonate) (PPNDS) on alpha-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid (AMPA) receptors.

作者信息

Suzuki Erika, Kessler Markus, Montgomery Kyle, Arai Amy C

机构信息

Department of Pharmacology, Southern Illinois University School of Medicine, Springfield, Illinois 62702, USA.

出版信息

Mol Pharmacol. 2004 Dec;66(6):1738-47. doi: 10.1124/mol.104.003038. Epub 2004 Sep 24.

Abstract

Suramin is a large naphthyl-polysulfonate compound that inhibits an array of receptors and enzymes, and it has also been reported to block currents mediated by glutamate receptors. This study shows that suramin and several structurally related compounds [8,8'-[carbonylbis(imino-3,1-phenylenecarbonylamino)]bis-(1,3,5-naphthalenetrisulfonic acid), 6Na (NF023), 8,8'-(carbonylbis(imino-4,1-phenylenecarbonylimino-4,1-phenylenecarbonylimino))bis-1,3,5-naphthalenetrisulfonic acid, Na (NF279), and 4,4',4'',4'''-[carbonyl-bis[imino-5,1,3-benzenetriyl-bis-(carbonylimino)]]tetrakis-benzene-1,3-disulfonic acid, 8Na (NF449)] reduce binding of [3H]alpha-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid (AMPA) and [3H]fluorowillardiine to rat brain membranes and homomeric GluR1-4 receptors, with IC50 values in the range of 5 to 180 microM. Inhibition often was less than complete at saturating drug concentrations and thus seems to be noncompetitive in nature. Pyridoxal-5'-phosphate-6-(2'-naphthylazo-6'-nitro-4',8'-disulfonate) (PPNDS) is a potent antagonist of purinoceptors that shares some structural elements with suramin yet is smaller than the latter. PPNDS also had potent effects on AMPA receptors (EC50 value of 4 microM) but of a kind not seen with the other compounds in that it increased binding affinity for radioagonists severalfold. In addition, PPNDS slowed association and dissociation rates more than 10 times. In physiological experiments with GluR2 receptors, PPNDS at 50 microM reduced the peak current by 30 to 50% but had only small effects on other waveform aspects such desensitization and steady-state currents. This pattern of effects differentiates PPNDS from other compounds such as thiocyanate and up-modulators, which increase agonist binding by enhancing desensitization or slowing deactivation, respectively. Receptor model simulations indicate that most effects can be accounted for by assuming that PPNDS slows agonist binding/unbinding and stabilizes the bound-closed state of the receptor. By extension, suramin is proposed to stabilize the unbound state and thereby to reduce affinity for agonists. These drugs thus act through a novel type of noncompetitive antagonism.

摘要

苏拉明是一种大型萘基聚磺酸盐化合物,可抑制一系列受体和酶,并且据报道它还能阻断谷氨酸受体介导的电流。本研究表明,苏拉明以及几种结构相关的化合物[8,8'-[羰基双(亚氨基-3,1-亚苯基羰基氨基)]双-(1,3,5-萘三磺酸),6Na (NF023),8,8'-(羰基双(亚氨基-4,1-亚苯基羰基亚氨基-4,1-亚苯基羰基亚氨基))双-1,3,5-萘三磺酸,Na (NF279),以及4,4',4'',4'''-[羰基-双[亚氨基-5,1,3-苯三基-双-(羰基亚氨基)]]四苯-1,3-二磺酸,8Na (NF449)]可降低[3H]α-氨基-3-羟基-5-甲基-4-异恶唑丙酸(AMPA)和[3H]氟维拉地丁与大鼠脑膜及同聚体GluR1-4受体的结合,IC50值在5至180微摩尔范围内。在饱和药物浓度下,抑制作用通常不完全,因此在本质上似乎是非竞争性的。吡哆醛-5'-磷酸-6-(2'-萘基偶氮-6'-硝基-4',8'-二磺酸盐)(PPNDS)是嘌呤受体的强效拮抗剂,与苏拉明有一些共同的结构元素,但比后者小。PPNDS对AMPA受体也有强效作用(EC50值为4微摩尔),但其作用类型与其他化合物不同,它使对放射性激动剂 的结合亲和力增加了几倍。此外,PPNDS使结合和解离速率减慢了10倍以上。在对GluR2受体的生理学实验中,50微摩尔的PPNDS使峰值电流降低了30%至50%,但对其他波形方面,如脱敏和稳态电流,只有很小的影响。这种效应模式将PPNDS与其他化合物,如硫氰酸盐和上调调节剂区分开来,后者分别通过增强脱敏或减慢失活来增加激动剂结合。受体模型模拟表明,大多数效应可以通过假设PPNDS减慢激动剂结合/解离并稳定受体的结合关闭状态来解释。由此推断,苏拉明被认为可稳定未结合状态,从而降低对激动剂的亲和力。因此,这些药物通过一种新型的非竞争性拮抗作用发挥作用。

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