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首页> 外文期刊>Analytical Biochemistry: An International Journal of Analytical and Preparative Methods >Thermostable single domain antibody-maltose binding protein fusion for Bacillus anthracis spore protein BclA detection
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Thermostable single domain antibody-maltose binding protein fusion for Bacillus anthracis spore protein BclA detection

机译:热稳定单域抗体-麦芽糖结合蛋白融合蛋白用于炭疽芽孢杆菌孢子蛋白BclA的检测

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摘要

We constructed a genetic fusion of a single domain antibody (sdAb) with the thermal stable maltose binding protein from the thermophile Pyrococcus furiosus (PfuMBP). Produced in the Escherichia coli cytoplasm with high yield, it proved to be a rugged and effective immunoreagent. The sdAb-A5 binds BclA, a Bacillus anthracis spore protein, with high affinity (K_D ~ 50 pM). MBPs, including the thermostable PfuMBP, have been demonstrated to be excellent folding chaperones, improving production of many recombinant proteins. A three-step purification of E. coli shake flask cultures of PfuMBP-sdAb gave a yield of approximately 100 mg/L highly purified product. The PfuMBP remained stable up to 120 °C, whereas the sdAb-A5 portion unfolded at approximately 68 to 70 °C but could refold to regain activity. This fusion construct was stable to heating at 1 mg/ml for 1 h at 70 °C, retaining nearly 100% of its binding activity; nearly one-quarter (24%) activity remained after 1 h at 90 °C. The PfuMBP-sdAb construct also provides a stable and effective method to coat gold nanoparticles. Most important, the construct was found to provide enhanced detection of B. anthracis Sterne strain (34F2) spores relative to the sdAb-A5 both as a capture reagent and as a detection reagent.
机译:我们构建了单结构域抗体(sdAb)与嗜热嗜热球菌(PfuMBP)的热稳定麦芽糖结合蛋白的遗传融合体。它在大肠埃希氏菌的细胞质中产生,被证明是一种坚固而有效的免疫试剂。 sdAb-A5以高亲和力(K_D〜50 pM)结合炭疽芽孢杆菌孢子蛋白BclA。包括耐热PfuMBP在内的MBP已被证明是出色的折叠分子伴侣,可提高许多重组蛋白的产量。 PfuMBP-sdAb的大肠杆菌摇瓶培养物的三步纯化产生了约100 mg / L高度纯化的产物。 PfuMBP在高达120°C的温度下仍保持稳定,而sdAb-A5部分则在约68至70°C的温度下展开,但可以重新折叠以恢复活性。该融合构建体在70°C下以1 mg / ml加热1 h稳定,保留了近100%的结合活性。在90°C下放置1 h后,仍有将近四分之一(24%)的活性。 PfuMBP-sdAb构建体还提供了一种稳定而有效的涂覆金纳米颗粒的方法。最重要的是,发现该构建体提供了相对于sdAb-A5的炭疽芽孢杆菌斯特恩菌株(34F2)孢子增强的捕获剂和检测试剂。

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