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Developmentof a Fluorescence Assay for the Characterizationof Brevenal Binding to Rat Brain Synaptosomes

机译:发展历程的荧光分析方法结合对大鼠脑突触小体的影响

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摘要

The marine dinoflagellate Karenia brevis produces a family of neurotoxins known as brevetoxins. Brevetoxins elicit their effects by binding to and activating voltage-sensitive sodium channels (VSSCs) in cell membranes. K. brevis also produces brevenal, a brevetoxin antagonist, which is able to inhibit and/or negate many of the detrimental effects of brevetoxins. Brevenal binding to VSSCs has yet to be fully characterized, in part due to the difficulty and expense of current techniques. In this study, we have developed a novel fluorescence binding assay for the brevenal binding site. Several fluorescent compounds were conjugated to brevenal to assess their effects on brevenal binding. The assay was validated against the radioligand assay for the brevenal binding site and yielded comparable equilibrium inhibition constants. The fluorescence-based assay was shown to be quicker and far less expensive and did not generate radioactive waste or need facilities for handling radioactive materials. In-depth studies using the brevenal conjugates showed that, while brevenal conjugates do bind to a binding site in the VSSC protein complex,they are not displaced by known VSSC site specific ligands. As such,brevenal elicits its action through a novel mechanism and/or currentlyunknown receptor site on VSSCs.
机译:海洋鞭毛藻短小孢子虫(Karenia brevis)产生一类称为短毒素的神经毒素。布雷莫毒素通过结合并激活细胞膜中的电压敏感钠通道(VSSC)来发挥作用。短杆菌K.也产生短杆菌毒素拮抗剂brevenal,其能够抑制和/或消除短杆菌毒素的许多有害作用。到VSSCs的束缚结合尚未得到充分表征,部分原因是现有技术的困难和昂贵。在这项研究中,我们已经开发了一种新颖的荧光结合检测方法。将几种荧光化合物缀合至brevenal以评估其对brevenal结合的影响。对照放射性配体测定法验证了该测定法的brevenal结合位点,并产生了相当的平衡抑制常数。结果表明,基于荧光的测定方法更快,更便宜,并且不产生放射性废物,也不需要处理放射性物质的设施。使用brevenal缀合物进行的深入研究表明,尽管brevenal缀合物确实与VSSC蛋白复合物中的结合位点结合,它们不会被已知的VSSC位点特异性配体取代。因此,brevenal通过一种新颖的机制和/或当前引发其行动VSSC上的未知受体位点。

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