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Guanine derivatives modulate L-glutamate uptake into rat brain synaptic vesicles.

机译:鸟嘌呤衍生物调节L-谷氨酸对大鼠脑突触小泡的吸收。

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摘要

Glutamate uptake into synaptic vesicles is driven by a proton electrochemical gradient generated by a vacuolar H(+)-ATPase and stimulated by physiological concentrations of chloride. This uptake plays an important role in glutamatergic transmission. We show here that vesicular glutamate uptake is selectively inhibited by guanine derivatives, in a time- and concentration-dependent manner. Guanosine, GMP, GDP, guanosine-5'-O-2-thiodiphosphate, GTP, or 5'-guanylylimidodiphosphate (GppNHp) inhibited glutamate uptake in 1.5 and 3min incubations, however, when incubating for 10min, only GTP or GppNHp displayed such inhibition. By increasing ATP concentrations, the inhibitory effect of GTP was no longer observed, but GppNHp still inhibited glutamate uptake. In the absence of ATP, vesicular ATPase can hydrolyze GTP in order to drive glutamate uptake. However, 5mM GppNHp inhibited ATP hydrolysis by synaptic vesicle preparations. GTP or GppNHp decreased the proton electrochemical gradient, whereas the other guanine derivatives did not. Glutamate saturation curves were assayed in order to evaluate the specificity of inhibition of the vesicular glutamate carrier by the guanine derivatives. The maximum velocity of the initial rate of glutamate uptake was decreased by all guanine derivatives. These results indicate that, although GppNHp can inhibit ATPase activity, guanine derivatives are more likely to be acting through interaction with vesicular glutamate carrier.
机译:液泡H(+)-ATPase产生的质子电化学梯度驱动谷氨酸摄入突触小泡,并由生理浓度的氯化物刺激。这种摄取在谷氨酸能传递中起重要作用。我们在这里表明,鸟嘌呤衍生物以时间和浓度依赖性方式选择性抑制水泡谷氨酸的摄取。鸟嘌呤,GMP,GDP,鸟嘌呤5'-O-2-硫代二磷酸,GTP或5'-鸟苷二磷酸(GppNHp)在1.5和3分钟的孵育中抑制了谷氨酸的吸收,但是,孵育10min时,只有GTP或GppNHp表现出这种抑制作用。通过增加ATP的浓度,不再观察到GTP的抑制作用,但GppNHp仍然抑制谷氨酸的吸收。在没有ATP的情况下,水泡ATPase可以水解GTP以驱动谷氨酸的吸收。然而,5mM GppNHp通过突触小泡制剂抑制ATP水解。 GTP或GppNHp降低了质子的电化学梯度,而其他鸟嘌呤衍生物没有。测定谷氨酸饱和度曲线以评估鸟嘌呤衍生物对囊泡谷氨酸载体的抑制特异性。所有鸟嘌呤衍生物均降低了初始谷氨酸吸收速率的最大速度。这些结果表明,尽管GppNHp可以抑制ATP酶活性,但是鸟嘌呤衍生物更可能通过与囊泡谷氨酸载体相互作用而起作用。

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