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Human ScFv that block sodium ion channel activity of tetrodotoxin.

机译:阻断河豚毒素钠离子通道活性的人ScFv。

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Tetrodotoxin (TTX) is a heterocyclic guanidinium alkaloid (C11H17N3O8) with molecular mass of ~320 Da. The TTX and toxic analogs block sodium ion activity of mammalian nerve cells resulting in failure to conduct nerve impulse which manifested clinically in host as variable degrees of organ paralysis. Human intoxication occurs after consuming food containing the toxins. Current treatment of the poisoning is supportive and symptomatic. There has been no specific drug or antidote for the TTX mediated malady. In this study, phage clones displaying human single chain antibody fragments (HuScFv) were selected from a human ScFv phage display library. HuScFv derived from phagemid transformed Escherichia coli clones (clones s16 and s35) bound to the TTX as tested by indirect ELISA and band shift assay. Homology modeling and molecular docking revealed that VL domain of the s16-HuScFv interacted with the hydroxyl groups of C6, C9, C10 and C11 of the TTX by means of Tyr 223, Ser226 and Tyr228, while the Asp53 and Asp55 of the VH domain of s35-HuScFv interacted with the positions 1 and 2 of the guanidinium group and the hydroxyl groups at C9 and C10 of the TTX. The s16- and s35-HuScFv neutralized the TTX bioactivity in nerve cell based- and mouse bio-assays. Moreover, the HuScFv could rescue the intoxicated mice from the TTX mediated lethality. Thus, the HuScFv derived from the transformed E. coli clones have high potential as a safe, effective and specific therapeutic remedy for TTX intoxication in humans and warrant further trials.
机译:河豚毒素(TTX)是一种杂环胍生物碱(C 11 H 17 N 3 O 8 ) 〜320 Da。 TTX和有毒类似物会阻断哺乳动物神经细胞的钠离子活性,导致无法传导神经冲动,这在临床上表现为宿主不同程度的器官麻痹。食用含有毒素的食物后会发生人体中毒。当前对中毒的治疗是支持性和症状性的。还没有针对TTX介导的疾病的特定药物或解毒剂。在这项研究中,展示人类单链抗体片段(HuScFv)的噬菌体克隆选自人类ScFv噬菌体展示文库。通过间接ELISA和带移分析测试,源自噬菌粒转化的大肠杆菌克隆(s16和s35克隆)的HuScFv。同源性建模和分子对接显示,s16-HuScFv的VL结构域通过Tyr 223,Ser226和Tyr228与TTX的C6,C9,C10和C11的羟基相互作用,而VH结构域的Asp53和Asp55 s35-HuScFv与胍基的1位和2位以及TTX的C9和C10处的羟基相互作用。 s16和s35-HuScFv在基于神经细胞和小鼠的生物测定中中和了TTX的生物活性。此外,HuScFv可以从TTX介导的杀伤力中拯救中毒的小鼠。因此,HuScFv衍生自转化的E。大肠杆菌克隆作为一种安全,有效和特异性的人类TTX中毒疗法具有很高的潜力,值得进一步试验。

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