Shemyakin-Ovchinnikov Institute of Bioorganic Chemistry, Russian Academy of Sciences, Moscow, Russia
The National University of Science and Technology MISIS, Moscow, Russia.
Biochem J. 2019 Apr 26;476(8):1285-1302. doi: 10.1042/BCJ20180909.
αδ-Bungarotoxins, a novel group of long-chain α-neurotoxins, manifest different affinity to two agonist/competitive antagonist binding sites of muscle-type nicotinic acetylcholine receptors (nAChRs), being more active at the interface of α-δ subunits. Three isoforms (αδ-BgTx-1-3) were identified in Malayan Krait () from Thailand by genomic DNA analysis; two of them (αδ-BgTx-1 and 2) were isolated from its venom. The toxins comprise 73 amino acid residues and 5 disulfide bridges, being homologous to α-bungarotoxin (α-BgTx), a classical blocker of muscle-type and neuronal α7, α8, and α9α10 nAChRs. The toxicity of αδ-BgTx-1 (LD = 0.17-0.28 µg/g mouse, i.p. injection) is essentially as high as that of α-BgTx. In the chick biventer cervicis nerve-muscle preparation, αδ-BgTx-1 completely abolished acetylcholine response, but in contrast with the block by α-BgTx, acetylcholine response was fully reversible by washing. αδ-BgTxs, similar to α-BgTx, bind with high affinity to α7 and muscle-type nAChRs. However, the major difference of αδ-BgTxs from α-BgTx and other naturally occurring α-neurotoxins is that αδ-BgTxs discriminate the two binding sites in the and mouse muscle nAChRs showing up to two orders of magnitude higher affinity for the α-δ site as compared with α-ε or α-γ binding site interfaces. Molecular modeling and analysis of the literature provided possible explanations for these differences in binding mode; one of the probable reasons being the lower content of positively charged residues in αδ-BgTxs. Thus, αδ-BgTxs are new tools for studies on nAChRs.
αδ-型别箭毒,一种新型长链α型神经毒素,对肌肉型烟碱型乙酰胆碱受体(nAChRs)的两个激动剂/竞争性拮抗剂结合位点具有不同的亲和力,在α-δ 亚基界面上更具活性。通过基因组 DNA 分析,从泰国的马来亚克雷特()中鉴定出 3 种同工型(αδ-BgTx-1-3);其中两种(αδ-BgTx-1 和 2)从其毒液中分离得到。这些毒素由 73 个氨基酸残基和 5 个二硫键组成,与经典的肌肉型和神经元型 α7、α8 和 α9α10 nAChRs 阻断剂α-型别箭毒(α-BgTx)同源。αδ-BgTx-1 的毒性(LD=0.17-0.28μg/g 小鼠,腹腔注射)与α-BgTx 基本相同。在小鸡双颈神经-肌肉标本中,αδ-BgTx-1 完全消除了乙酰胆碱的反应,但与α-BgTx 阻断不同,乙酰胆碱的反应可通过洗涤完全逆转。与α-BgTx 相似,αδ-BgTxs 与α7 和肌肉型 nAChRs 具有高亲和力结合。然而,αδ-BgTxs 与α-BgTx 和其他天然存在的α-型神经毒素的主要区别在于,αδ-BgTxs 区分了 和小鼠肌肉型 nAChRs 的两个结合位点,与α-ε 或 α-γ 结合位点界面相比,对α-δ 位点的亲和力高达两个数量级。文献中分子建模和分析提供了这些结合模式差异的可能解释;其中一个可能的原因是αδ-BgTxs 中带正电荷残基的含量较低。因此,αδ-BgTxs 是研究 nAChRs 的新工具。