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首页> 外文期刊>Angewandte Chemie >Enzyme Encapsulation by a Ferritin Cage
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Enzyme Encapsulation by a Ferritin Cage

机译:用铁蛋白笼子封装

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摘要

Ferritins, conserved across all kingdoms of life, are protein nanocages that evolved to mineralize iron. The last several decades have shown that these cages have considerable technological and medical potential owing to their stability and tolerance to modification, as well as their ability to template nanoparticle synthesis and incorporate small molecules. Here we show that it is possible to encapsulate proteins in a ferritin cage by exploiting electrostatic interactions with its negatively charged interior. Positively supercharged green fluorescent protein is efficiently taken up by Archaeoglobus fulgidus ferritin in a tunable fashion. Moreover, several enzymes were readily incorporated when genetically tethered to this fluorescent protein. These fusion proteins retained high catalytic activity and showed increased tolerance to proteolysis and heat. Equipping ferritins with enzymatic activity paves the way for many new nanotechnological and pharmacological applications.
机译:在所有王国范围内保存的铁蛋白是蛋白质纳米物,其演变为矿化铁。 过去几十年来表明,由于它们的稳定性和耐受性,这些笼子具有相当大的技术和医学潜力,以及它们对纳米粒子合成并掺入小分子的能力。 在这里,我们表明可以通过利用与其带负电的内部的静电相互作用来封装铁蛋白笼中的蛋白质。 archaeoglobus fulgidus铁蛋白以可调时的方式有效地吸收正增压的绿色荧光蛋白。 此外,当遗传统称到该荧光蛋白时容易掺入几种酶。 这些融合蛋白保留了高催化活性,并显示出对蛋白水解和热量的耐受性增加。 配备酶活性的铁素铺平了许多新的纳米技术和药理学应用的方式。

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