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Development of a Denaturation/Renaturation-Based Production Process for Ferritin Nanoparticles

机译:基于变性/变性的铁蛋白纳米粒子生产工艺的开发

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摘要

Recently, we presented a simple method for generating biological functional protein-based nanoparticles that are ready for use as label agents in bioaffinity assays (Jaaskelainen et al., 2007 Small 3:1362-1367). In this process, the particle shell (ferritin protein) and binding molecules are conjugated via genetic fusion, and particles with binding capacity are produced in a single bacterial cultivation. Production is combined with simple, non-chromatographic purification during which Europium ions are introduced into particles to serve as marker agents. Denaturation-refolding has previously performed by means of pH changes. Here, we test urea as an alternative agent for denaturation, and examine techniques to improve refolding of the functional particles. Three different types of binding Molecules were employed in our experiments: biotin carboxyl carrier protein (a small protein with 87 amino acids), single chain antibody fragment (a complex binding protein) and calmodulin-binding peptide (27 amino acids). Urea was successfully utilized to generate functional particles with inherent binding activity and label function. Additionally, particle yield was effectively optimized by analyzing various refolding and bacterial production conditions. Our results clearly demonstrate that this simple biological method of producing functional ferritin-based particles is flexible, and different types of binding moieties can be applied by adjusting the production conditions.
机译:最近,我们提出了一种简单的方法来生成生物功能的基于蛋白质的纳米颗粒,这些纳米颗粒准备用作生物亲和力测定中的标记剂(Jaaskelainen等人,2007 Small 3:1362-1367)。在该过程中,颗粒壳(铁蛋白蛋白)和结合分子通过遗传融合而结合在一起,并且在一次细菌培养中就产生了具有结合能力的颗粒。将生产与简单的非色谱纯化相结合,在此过程中,将Euro离子引入颗粒中以用作标记剂。先前通过pH变化进行变性-重折叠。在这里,我们测试尿素作为变性剂,并研究改善功能性颗粒复性的技术。在我们的实验中使用了三种不同类型的结合分子:生物素羧基载体蛋白(一种具有87个氨基酸的小蛋白),单链抗体片段(一种复杂的结合蛋白)和钙调蛋白结合肽(27个氨基酸)。尿素已成功用于产生具有固有结合活性和标记功能的功能性颗粒。此外,通过分析各种重折叠和细菌生产条件,有效地优化了颗粒产量。我们的结果清楚地表明,这种生产功能性铁蛋白基颗粒的简单生物方法具有灵活性,并且可以通过调整生产条件来应用不同类型的结合部分。

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