Spider toxin and the glutamate receptors.

N Kawai, A Miwa, K Shimazaki, Y Sahara, H P Robinson, T Nakajima
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Abstract

A neurotoxin (JSTX) was isolated from the venom of spider (Nephila clavata). JSTX blocked both the excitatory postsynaptic (EPSPs) and glutamate-induced potentials in lobster neuromuscular synapse and squid giant synapse. In mammalian central nervous system, JSTX blocked the EPSPs in CA1 pyramidal neurons resulting from stimulation of Schaffer collateral/commissure input. Pharmacological investigation showed that JSTX preferentially suppressed quisqualate/kainate receptor subtypes but was much less effective on NMDA receptor. Using synthesized spider toxins we studied the structure-activity relationship and found that the 2,4 dihydroxyphenylacetyl asparagine in the toxin structure was responsible for suppressive action, while the remaining part containing a polyamine was related to the agonist binding site with the polycationic part enhancing the toxic activity. Labeling of synthesized JSTX was used for histochemical as well as biochemical studies. Using autoradiography, 125I-JSTX-3 was found to bind at the lobster neuromuscular synapse. Histochemical study utilizing the interaction of biotinylated JSTX-3 with avidin showed specific binding of the toxin in rat cerebellum and hippocampus. JSTX-3-binding protein was purified from rat brain by affinity chromatography. SDS-PAGE of the affinity purified protein showed at least 4 bands ranging from 40 to 70 kDa.

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蜘蛛毒素和谷氨酸受体。
从蜘蛛(Nephila clavata)毒液中分离出一种神经毒素(JSTX)。JSTX对龙虾神经肌肉突触和鱿鱼巨突触的兴奋性突触后电位和谷氨酸诱导电位均有抑制作用。在哺乳动物中枢神经系统中,JSTX阻断了由Schaffer侧支/连接输入刺激引起的CA1锥体神经元的epsp。药理研究表明,JSTX优先抑制准酸盐/盐酸盐受体亚型,但对NMDA受体的抑制作用较弱。利用合成的蜘蛛毒素研究其构效关系,发现毒素结构中的2,4二羟基苯乙酰天冬酰胺具有抑制作用,其余含有多胺的部分与激动剂结合位点有关,其中多阳离子部分增强了毒性活性。对合成的JSTX进行标记,用于组织化学和生化研究。利用放射自显影技术,125I-JSTX-3被发现与龙虾神经肌肉突触结合。利用生物素化JSTX-3与亲和素相互作用的组织化学研究表明,毒素在大鼠小脑和海马中具有特异性结合。采用亲和层析法从大鼠脑中纯化jstx -3结合蛋白。亲和纯化蛋白的SDS-PAGE显示至少4条条带,范围在40 ~ 70 kDa之间。
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