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培养的胎鼠神经细胞上与钠通道相关的[125I]α-蝎毒素结合位点的超微结构可视化。

Ultrastructural visualization of Na+-channel associated [125I]alpha-scorpion toxin binding sites on fetal mouse nerve cells in culture.

作者信息

Boudier J A, Berwald-Netter Y, Dellmann H D, Boudier J L, Couraud F, Koulakoff A, Cau P

出版信息

Brain Res. 1985 May;352(1):137-42. doi: 10.1016/0165-3806(85)90097-5.

Abstract

Purified neurotoxin II from the scorpion Androctonus australis Hector (alpha-ScTx) has previously been shown to bind specifically to the voltage-sensitive Na+ channels of excitable cells. Recent studies, using high specific activity 125I-labeled alpha-ScTx, demonstrated specific binding to neuronal cells derived from fetal mouse brains. In the present study, 125I-labeled alpha-ScTx was used to localize the voltage-sensitive Na+ channels in cultured fetal mouse brain cells. By quantitative electron microscope autoradiography we demonstrate that specific alpha-ScTx binding sites are selectively located at the plasma membrane. Estimates of their density revealed that neurites at 13 days in vitro carry at least 6 X more specific alpha-ScTx sites than cell body membrane.

摘要

先前已表明,从澳大利亚杀人蝎(Androctonus australis Hector)中纯化得到的神经毒素II(α-ScTx)可特异性结合可兴奋细胞的电压敏感性钠离子通道。最近的研究使用高比活性的125I标记α-ScTx,证明其可与源自胎鼠脑的神经元细胞发生特异性结合。在本研究中,使用125I标记的α-ScTx对培养的胎鼠脑细胞中的电压敏感性钠离子通道进行定位。通过定量电子显微镜放射自显影,我们证明特异性α-ScTx结合位点选择性地位于质膜上。对其密度的估计显示,体外培养13天的神经突携带的特异性α-ScTx位点比细胞体膜至少多6倍。

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