Max S I, Liang J S, Potter L T
Department of Molecular and Cellular Pharmacology, University of Miami School of Medicine, Florida 33101.
J Neurosci. 1993 Oct;13(10):4293-300. doi: 10.1523/JNEUROSCI.13-10-04293.1993.
The venom of the Eastern green mamba from Africa, Dendroaspis angusticeps, was found to block the binding of 3H-quinuclidinyl benzilate to pure m1 and m4 muscarinic ACh receptors expressed in Chinese hamster ovary cells. The principal toxin in the venom with anti-m1 muscarinic activity was purified by gel filtration and reversed-phase HPLC. This toxin has 64 amino acids, a molecular mass of 7361 Da, and an isoelectric point of 7.04. Its cysteine residues are homologous with those in curare-mimetic alpha-neurotoxins, and with those in fasciculin, which inhibits AChE. At low concentrations the toxin blocked m1 receptors fully and pseudoirreversibly while having no antagonist activity on m2-m5 receptors; the toxin is therefore named "m1-toxin." At higher concentrations m1-toxin interacted reversibly with m4 receptors, and half of the toxin dissociated in 20 min at 25 degrees C. The affinity of m1-toxin is therefore much higher for m1 than for m4 receptors. By comparison with m1-toxin, pirenzepine has sixfold higher affinity for m1 than for m4 receptors. Autoradiographs of muscarinic receptors in the rat brain demonstrated that m1-toxin blocked the binding of 2 nM 3H-pirenzepine only in regions known to bind m1-specific antibodies. Thus, m1-toxin is a much more selective ligand than pirenzepine for functional and binding studies of m1 muscarinic receptors.
研究发现,来自非洲的东部绿曼巴蛇(Dendroaspis angusticeps)的毒液能够阻断3H-喹核醇基苯甲酸酯与中国仓鼠卵巢细胞中表达的纯m1和m4毒蕈碱型乙酰胆碱受体的结合。通过凝胶过滤和反相高效液相色谱法纯化了毒液中具有抗m1毒蕈碱活性的主要毒素。这种毒素含有64个氨基酸,分子量为7361 Da,等电点为7.04。其半胱氨酸残基与箭毒样α-神经毒素以及抑制乙酰胆碱酯酶的束丝菌素中的半胱氨酸残基同源。在低浓度下,该毒素能完全且假不可逆地阻断m1受体,而对m2 - m5受体无拮抗活性;因此,这种毒素被命名为“m1毒素”。在较高浓度下,m1毒素与m4受体可逆性相互作用,在25℃时,一半的毒素在20分钟内解离。所以,m1毒素对m1受体的亲和力比对m4受体的亲和力高得多。与m1毒素相比,哌仑西平对m1受体的亲和力比对m4受体的亲和力高6倍。大鼠脑中毒蕈碱受体的放射自显影片显示,m1毒素仅在已知能结合m1特异性抗体的区域阻断2 nM 3H-哌仑西平的结合。因此,对于m1毒蕈碱受体的功能和结合研究,m1毒素是比哌仑西平更具选择性的配体。