Yamada K A, Tang C M
Department of Neurology, Washington University School of Medicine, St. Louis, Missouri 63110.
J Neurosci. 1993 Sep;13(9):3904-15. doi: 10.1523/JNEUROSCI.13-09-03904.1993.
A distinctive characteristic of the AMPA subset of glutamate receptor channels is their remarkably rapid desensitization. A family of compounds, the benzothiadiazides, is described here that potently inhibit rapid glutamate receptor desensitization. The structure-activity relationships of these compounds are examined and the actions of cyclothiazide (CYZ), the most potent of these compounds, are described in detail. At the macroscopic level CYZ reduced rapid desensitization, enhancing the steady-state and peak current produced by 1 mM quisqualate with EC50 values of 14 and 12 microM, respectively, and shifted the quisqualate peak current concentration-response relation to the left. The slight outward rectification of the steady-state quisqualate current-voltage relationship was reduced by CYZ. At the microscopic level CYZ caused glutamate to induce long bursts of channel openings, and greatly increased the number of repeated openings. At 10 microM CYZ did not have measurable effects on the fast component of deactivation nor did it have statistically significant effects on the distribution of the faster components of glutamate-induced burst duration. In contrast, 10 microM CYZ increased the amplitude and significantly prolonged the duration of the spontaneous miniature EPSCs. The identification and characterization of this new family of gating modifiers may further facilitate the investigation into the mechanisms underlying rapid glutamate receptor desensitization and the physiological roles that it may serve.
谷氨酸受体通道的AMPA亚型的一个显著特征是其极其快速的脱敏作用。本文描述了一类化合物——苯并噻二嗪类,它们能有效抑制谷氨酸受体的快速脱敏。研究了这些化合物的构效关系,并详细描述了其中最有效的化合物环噻嗪(CYZ)的作用。在宏观水平上,CYZ减少了快速脱敏,增强了由1 mM喹啉酸产生的稳态电流和峰值电流,其EC50值分别为14和12 microM,并使喹啉酸峰值电流浓度-反应关系向左移动。CYZ降低了稳态喹啉酸电流-电压关系的轻微外向整流。在微观水平上,CYZ使谷氨酸诱导通道长时间开放,并大大增加了重复开放的次数。在10 microM时,CYZ对失活的快速成分没有可测量的影响,对谷氨酸诱导的爆发持续时间的较快成分的分布也没有统计学上的显著影响。相反,10 microM的CYZ增加了自发性微小兴奋性突触后电流的幅度并显著延长了其持续时间。这一新的门控修饰剂家族的鉴定和表征可能会进一步促进对谷氨酸受体快速脱敏的潜在机制及其可能发挥的生理作用的研究。