Fry Bryan G, Lumsden Natalie G, Wüster Wolfgang, Wickramaratna Janith C, Hodgson Wayne C, Kini R Manjunatha
Department of Biological Sciences, Faculty of Science, National University of Singapore, 119260 Singapore.
J Mol Evol. 2003 Oct;57(4):446-52. doi: 10.1007/s00239-003-2497-3.
The evolution of venom in advanced snakes has been a focus of long-standing interest. Here we provide the first complete amino acid sequence of a colubrid toxin, which we have called alpha-colubritoxin, isolated from the Asian ratsnake Coelognathus radiatus (formerly known as Elaphe radiata), an archetypal nonvenomous snake as sold in pet stores. This potent postsynaptic neurotoxin displays readily reversible, competitive antagonism at the nicotinic receptor. The toxin is homologous with, and phylogenetically rooted within, the three-finger toxins, previously thought unique to elapids, suggesting that this toxin family was recruited into the chemical arsenal of advanced snakes early in their evolutionary history. LC-MS analysis of venoms from most other advanced snake lineages revealed the widespread presence of components of the same molecular weight class, suggesting the ubiquity of three-finger toxins across advanced snakes, with the exclusion of Viperidae. These results support the role of venom as a key evolutionary innovation in the early diversification of advanced snakes and provide evidence that forces a fundamental rethink of the very concept of nonvenomous snake.
高级蛇类毒液的进化一直是长期以来备受关注的焦点。在此,我们提供了一种游蛇科毒素的首个完整氨基酸序列,我们将其命名为α - 游蛇毒素,它是从亚洲鼠蛇(Coelognathus radiatus,原名为Elaphe radiata)中分离出来的,这种蛇是宠物店里售卖的典型无毒蛇。这种强效的突触后神经毒素在烟碱型受体上表现出易于逆转的竞争性拮抗作用。该毒素与三指毒素同源,且在系统发育上根植于三指毒素,此前认为三指毒素是眼镜蛇科所特有的,这表明这个毒素家族在高级蛇类进化历史的早期就被纳入了其化学武器库。对大多数其他高级蛇类谱系毒液的液相色谱 - 质谱分析表明,存在广泛的相同分子量级别的成分,这表明除蝰蛇科外,三指毒素在高级蛇类中普遍存在。这些结果支持了毒液在高级蛇类早期多样化过程中作为关键进化创新的作用,并提供了迫使人们对无毒蛇这一概念进行根本性重新思考的证据。