Utkin Yuri N
Laboratory of Molecular Toxinology, Shemyakin-Ovchinnikov Institute of Bioorganic Chemistry, Moscow 117997, Russia.
World J Biol Chem. 2019 Jan 7;10(1):17-27. doi: 10.4331/wjbc.v10.i1.17.
Three-finger toxins (TFTs) comprise one of largest families of snake venom toxins. While they are principal to and the most toxic components of the venoms of the snake family, their presence has also been detected in the venoms of snakes from other families. The first TFT, α-bungarotoxin, was discovered almost 50 years ago and has since been used widely as a specific marker of the α7 and muscle-type nicotinic acetylcholine receptors. To date, the number of TFT amino acid sequences deposited in the UniProt Knowledgebase free-access database is more than 700, and new members are being added constantly. Although structural variations among the TFTs are not numerous, several new structures have been discovered recently; these include the disulfide-bound dimers of TFTs and toxins with nonstandard pairing of disulfide bonds. New types of biological activities have also been demonstrated for the well-known TFTs, and research on this topic has become a hot topic of TFT studies. The classic TFTs α-bungarotoxin and α-cobratoxin, for example, have now been shown to inhibit ionotropic receptors of γ-aminobutyric acid, and some muscarinic toxins have been shown to interact with adrenoceptors. New, unexpected activities have been demonstrated for some TFTs as well, such as toxin interaction with interleukin or insulin receptors and even TFT-activated motility of sperm. This minireview provides a summarization of the data that has emerged in the last decade on the TFTs and their activities.
三指毒素(TFTs)是蛇毒毒素中最大的家族之一。虽然它们是眼镜蛇科蛇毒的主要且毒性最强的成分,但在其他科蛇的毒液中也已检测到它们的存在。首个三指毒素α-银环蛇毒素于近50年前被发现,此后被广泛用作α7和肌肉型烟碱型乙酰胆碱受体的特异性标记物。截至目前,存于UniProt知识库免费访问数据库中的三指毒素氨基酸序列数量超过700个,且新成员不断增加。尽管三指毒素之间的结构变异并不多,但最近发现了几种新结构;这些包括三指毒素的二硫键结合二聚体以及具有非标准二硫键配对的毒素。一些知名的三指毒素也展现出了新型生物活性,关于这一主题的研究已成为三指毒素研究的热点。例如,经典的三指毒素α-银环蛇毒素和α-眼镜蛇毒素现已被证明可抑制γ-氨基丁酸的离子型受体,一些毒蕈碱毒素已被证明可与肾上腺素能受体相互作用。一些三指毒素还展现出了新的、意想不到的活性,如毒素与白细胞介素或胰岛素受体的相互作用,甚至三指毒素激活精子的运动能力。这篇小型综述总结了过去十年中有关三指毒素及其活性的已出现数据。