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Random mutagenesis of BoNT/E Hc nanobody to construct a secondary phage-display library.

机译:BoNT / E Hc纳米抗体的随机诱变,以构建二级噬菌体展示文库。

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Aims: To construct secondary mutant phage-display library of recombinant single variable domain (VHH) against botulinum neurotoxin E by error-prone PCR. Methods and Results: The gene coding for specific VHH derived from the camel immunized with binding domain of botulinum neurotoxin E (BoNT/E) was amplified by error-prone PCR. Several biopanning rounds were used to screen the phage-displaying BoNT/E Hc nanobodies. The final nanobody, SHMR4, with increased affinity recognized BoNT/E toxin with no cross-reactivity with other antigens especially with related BoNT toxins. Conclusions: The constructed nanobody could be a suitable candidate for VHH-based biosensor production to detect the Clostridium botulinum type E. Significance and Impact of the Study: Diagnosis and treatment of botulinum neurotoxins are important. Generation of high-affinity antibodies based on the construction of secondary libraries using affinity maturation step leads to the development of reagents for precise diagnosis and therapy.
机译:目的:通过易错PCR构建针对肉毒杆菌神经毒素E的重组单可变域(VHH)的二级突变噬菌体展示文库。方法和结果:通过易错PCR扩增了用肉毒杆菌神经毒素E结合域(BoNT / E)免疫的骆驼衍生的编码特定VHH的基因。使用几轮生物淘选来筛选展示噬菌体的BoNT / E Hc纳米抗体。最终的纳米抗体SHMR4具有更高的亲和力,可识别BoNT / E毒素,而与其他抗原(尤其是相关的BoNT毒素)没有交叉反应。结论:构建的纳米抗体可能适合用于基于VHH的生物传感器生产,以检测E型肉毒梭菌。研究的意义和影响:肉毒杆菌神经毒素的诊断和治疗很重要。基于使用亲和力成熟步骤构建二级文库的高亲和力抗体的产生,导致了用于精确诊断和治疗的试剂的发展。

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