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Purification and Characterization of Botulinum Neurotoxin FA from a Genetically Modified Clostridium botulinum Strain

机译:转基因肉毒梭菌肉毒杆菌神经毒素FA的纯化和鉴定

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Botulinum neurotoxins (BoNTs), produced by neurotoxigenic clostridial species, are the cause of the severe disease botulism in humans and animals. Early research on BoNTs has led to their classification into seven serotypes (serotypes A to G) based upon the selective neutralization of their toxicity in mice by homologous antibodies. Recently, a report of a potential eighth serotype of BoNT, designated “type H,” has been controversial. This novel BoNT was produced together with BoNT/B2 in a dual-toxin-producing Clostridium?botulinum strain. The data used to designate this novel toxin as a new serotype were derived from culture supernatant containing both BoNT/B2 and novel toxin and from sequence information, although data from two independent laboratories indicated neutralization by antibodies raised against BoNT/A1, and classification as BoNT/FA was proposed. The sequence data indicate a chimeric structure consisting of a BoNT/A1 receptor binding domain, a BoNT/F5 light-chain domain, and a novel translocation domain most closely related to BoNT/F1. Here, we describe characterization of this toxin purified from the native strain in which expression of the second BoNT (BoNT/B) has been eliminated. Mass spectrometry analysis indicated that the toxin preparation contained only BoNT/FA and confirmed catalytic activity analogous to that of BoNT/F5. The in vivo mouse bioassay indicated a specific activity of this toxin of 3.8 × 107 mouse 50% lethal dose (mLD50) units/mg, whereas activity in cultured human neurons was very high (50% effective concentration [EC50] = 0.02 mLD50/well). Neutralization assays in cells and mice both indicated full neutralization by various antibodies raised against BoNT/A1, although at 16- to 20-fold-lower efficiency than for BoNT/A1. IMPORTANCE Botulinum neurotoxins (BoNTs), produced by anaerobic bacteria, are the cause of the potentially deadly, neuroparalytic disease botulism. BoNTs have been classified into seven serotypes, serotypes A to G, based upon their selective neutralization by homologous antiserum, which is relevant for clinical and diagnostic purposes. Even though supportive care dramatically reduces the death rate of botulism, the only pharmaceutical intervention to reduce symptom severity and recovery time is early administration of antitoxin (antiserum raised against BoNTs). A recent report of a novel BoNT serotype, serotype H, raised concern of a “treatment-resistant” and highly potent toxin. However, the toxin’s chimeric structure and characteristics indicate a chimeric BoNT/FA. Here we describe the first characterization of this novel toxin in purified form. BoNT/FA was neutralized by available antitoxins, supporting classification as BoNT/FA. BoNT/FA required proteolytic activation to achieve full toxicity and had relatively low potency in mice compared to BoNT/A1 but surprisingly high activity in cultured neurons.
机译:产神经毒素的梭菌产生的肉毒杆菌神经毒素(BoNT)是人和动物中严重肉毒杆菌中毒的原因。对BoNTs的早期研究已基于通过同源抗体对小鼠毒性的选择性中和,将其分为7种血清型(A至G型)。最近,关于BoNT潜在的第八种血清型(称为“ H型”)的报道引起争议。这种新型的BoNT是与BoNT / B2一起在产生双毒素的产肉毒梭菌菌株中生产的。用于指定这种新毒素为新血清型的数据来自含有BoNT / B2和新型毒素的培养上清液和序列信息,尽管来自两个独立实验室的数据表明被针对BoNT / A1的抗体所中和,并分类为BoNT提出了/ FA。序列数据表明由BoNT / A1受体结合结构域,BoNT / F5轻链结构域和与BoNT / F1最密切相关的新型易位结构域组成的嵌合结构。在这里,我们描述了从第二株BoNT(BoNT / B)的表达已被消除的天然菌株中纯化的这种毒素的表征。质谱分析表明该毒素制剂仅包含BoNT / FA,并证实了与BoNT / F5类似的催化活性。体内小鼠生物测定表明,这种毒素的比活性为3.8×10 7 小鼠50%致死剂量(mLD 50 )单位/ mg,而在培养的人神经元中具有这种活性。很高(50%有效浓度[EC 50 ] = 0.02 mLD 50 /孔)。细胞和小鼠的中和试验均表明,各种抗BoNT / A1抗体可完全中和,尽管效率比BoNT / A1低16至20倍。重要事项厌氧细菌产生的肉毒杆菌神经毒素(BoNT)是潜在致命的神经麻痹性肉毒中毒的原因。 BoNT根据其被同源抗血清的选择性中和而被分类为7种血清型,从A型到G型,与临床和诊断目的有关。尽管支持治疗可显着降低肉毒中毒的死亡率,但唯一可减轻症状严重程度和恢复时间的药物干预措施是尽早施用抗毒素(抗BoNTs产生的抗死皮)。最近关于新型BoNT血清型H的报道引起了人们对“抗治疗”和高效毒素的关注。但是,该毒素的嵌合结构和特征表明其为BoNT / FA嵌合体。在这里,我们以纯化形式描述了这种新型毒素的第一个特征。 BoNT / FA被可用的抗毒素中和,支持分类为BoNT / FA。与BoNT / A1相比,BoNT / FA需要蛋白水解激活才能达到完全毒性,并且在小鼠中的效力相对较低,但是在培养的神经元中却具有令人惊讶的高活性。

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