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β-银环蛇毒素的完全纯化。其作用以及美洲矛头蝮蛇毒素对突触体乙酰胆碱积累和释放作用的特性研究。

Complete purification of beta-bungarotoxin. Characterization of its action and that of tityustoxin on synaptosomal accumulation and release of acetylcholine.

作者信息

Spokes J W, Dolly J O

出版信息

Biochim Biophys Acta. 1980 Feb 15;596(1):81-93. doi: 10.1016/0005-2736(80)90172-8.

Abstract

beta-Bungarotoxin, a snake venom protein (molecular weight 21 000) that irreversibly blocks release of acetylcholine from nerve terminals, was purified to homogeneity by ion-exchange chromatography and isoelectric focussing. Sodium dodecyl sulphate gel electrophoresis under reducing conditions resolved two subunits of molecular weight 11 400 and 9000. In the presence of deoxycholate, it showed phospholipase activity which was activated by Ca2+ but not Sr2+.beta-Bungarotoxin and tityustoxin, a polypeptide that prolongs the opening of sodium channels, inhibited choline accumulation by synaptosomes purified from rat cortex. Both toxins also induced release of acetylcholine which was maximal in the presence of Ca2+ and showed ED50 values of 5 . 10(8) and 10(6) M, respectively. Unlike tityustoxin, beta-bungarotoxin also induced release of choline and cytoplasmic lactate dehydrogenase from synaptosomes, with similar potency, suggesting that it causes some membrane disruption, following its binding to the membrane. The effects of tityustoxin on both accumulation and release were antagonised by tetrodotoxin, which specifically blocks Na+ channels, indicating that it mediates these effects by depolarization. Thus, these toxins may prove to be useful probes for characterisation of nerve membrane components involved in triggering transmitter release.

摘要

β-银环蛇毒素是一种蛇毒蛋白(分子量为21000),它能不可逆地阻断神经末梢乙酰胆碱的释放。通过离子交换色谱法和等电聚焦法将其纯化至同质。在还原条件下进行的十二烷基硫酸钠凝胶电泳分离出分子量分别为11400和9000的两个亚基。在脱氧胆酸盐存在的情况下,它表现出磷脂酶活性,该活性被Ca2+激活但不被Sr2+激活。β-银环蛇毒素和延长钠通道开放时间的多肽——美洲毒蛛毒素,抑制了从大鼠皮层纯化的突触体对胆碱的摄取。两种毒素还诱导了乙酰胆碱的释放,在Ca2+存在时释放量最大,其半数有效剂量(ED50)值分别为5×10^(-8) M和10^(-6) M。与美洲毒蛛毒素不同,β-银环蛇毒素还以相似的效力诱导突触体释放胆碱和细胞质乳酸脱氢酶,这表明它在与膜结合后会导致一些膜破坏。美洲毒蛛毒素对摄取和释放的作用被特异性阻断Na+通道的河豚毒素所拮抗,这表明它是通过去极化介导这些作用的。因此,这些毒素可能被证明是用于表征参与触发递质释放的神经膜成分的有用探针。

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