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通过一种新型亲和标签将选择性烯还原酶固定在磁性纳米颗粒上。

Selective ene-reductase immobilization to magnetic nanoparticles through a novel affinity tag.

机构信息

Bioseparation Engineering Group, Department of Mechanical Engineering, Technical University of Munich, Garching, Germany.

出版信息

Biotechnol J. 2021 Apr;16(4):e2000366. doi: 10.1002/biot.202000366. Epub 2020 Dec 28.

Abstract

BACKGROUND

Magnetic nanoparticles (MNPs) are becoming more important as carriers, because of their large specific surface area and easy separability. They are increasingly used in enzyme technology, diagnostics, and drug delivery.

MAJOR RESULTS

For the directed and almost irreversible immobilization of proteins on MNPs, we have developed a new selective (His-Arg) peptide-tag, that binds fusion proteins directly from an E. coli cell lysate to non-functionalized, low-cost MNPs. Using the immobilization of an ene-reductase as an example, we could demonstrate that the fusion with this tag increases thermostability without reducing overall activity (ER w/o tag: t  = 3.7 h, (HR) -ER: t  = 9.9 h). Immobilization by adsorption in Tris buffer resulted in very high enzyme loads with approx. 380 mg g and 67% residual activity. The immobilization on the MNPs allowed a fast concentration, buffer exchange, and reuse. While about 50% of the activity was lost after the first reuse, we were able to show that the activity did not decrease further and was stable for another nine cycles.

CONCLUSION

According to our studies, our tag highly works for any kind of immobilization on MNPs and holds the potential for enzyme immobilizations as well as for drug delivery and sensors.

摘要

背景

由于具有较大的比表面积和易于分离的特点,磁性纳米粒子(MNPs)作为载体正变得越来越重要。它们越来越多地用于酶技术、诊断和药物输送。

主要结果

为了将蛋白质定向且几乎不可逆地固定在 MNPs 上,我们开发了一种新的选择性(His-Arg)肽标签,该标签可直接从大肠杆菌细胞裂解物中将融合蛋白与非功能化、低成本的 MNPs 结合。通过固定烯还原酶作为示例,我们可以证明融合该标签可提高热稳定性而不降低整体活性(无标签 ER:t = 3.7 h,(HR)-ER:t = 9.9 h)。在 Tris 缓冲液中通过吸附固定导致酶负载非常高,约为 380 mg g 和 67%的残余活性。固定在 MNPs 上可实现快速浓缩、缓冲液交换和重复使用。虽然第一次重复使用后约有 50%的活性损失,但我们能够表明活性没有进一步降低,并且在另外九个循环中保持稳定。

结论

根据我们的研究,我们的标签非常适用于 MNPs 上的任何类型的固定化,并且具有用于酶固定化以及药物输送和传感器的潜力。

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