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基于丝氨酸蛋白酶抑制剂 Silaffin-3 的五聚赖氨酰簇作为一种新的融合标签,可用于一步法将重组枯草芽孢杆菌过氧化氢酶固定并纯化为裸二氧化硅颗粒上的融合蛋白。

Silaffin-3-derived pentalysine cluster as a new fusion tag for one-step immobilization and purification of recombinant Bacillus subtilis catalase on bare silica particles.

机构信息

Department of Biotechnology and Bioinformatics, Korea University, Sejong-Ro 2511, Sejong 30019, Republic of Korea; Department of Botany and Microbiology, Faculty of Science, Minia University, Minia 61519, Egypt.

Department of Chemical Engineering and Applied Chemistry, Chungnam National University, Daejeon 34134, Republic of Korea.

出版信息

Int J Biol Macromol. 2020 Sep 15;159:1103-1112. doi: 10.1016/j.ijbiomac.2020.04.172. Epub 2020 Apr 25.

Abstract

Bio-catalysis by enzymes on solid surfaces has been implemented in several practical applications. However, the current methods for efficient enzyme immobilization with retained activity need further development. Herein, a simple, rapid, and economical, bio-affinity-based approach was developed for the direct immobilization with high activity recovery of the Bacillus subtilis catalase (CAT), recombinantly expressed in Escherichia coli. Silaffin-3-derived pentalysine cluster (Sil3K) from Thalassiosira pseudonana and its mutant variant (penta-arginine peptide; Sil3R) were used for the first time in the non-covalent immobilization of the recombinant enzyme on silica particles. The fusion proteins CAT-Sil3K and CAT-Sil3R were selectively loaded from the cell lysates onto the silica surface. Unexpectedly, the Lys-based tag (Sil3K) was the superior to Arg-based tag (Sil3R) or tag-less system for the high recovery of CAT activity upon immobilization; an 8.4-fold and 1.5-fold increase in the catalytic activity was observed for CAT-Sil3K compared with the tag-less CAT and CAT-Sil3R, respectively. Furthermore, the CAT-Sil3K immobilized on silica particles exhibited improved thermal, pH and storage stabilities, and retained 72% of the initial activity after five reaction cycles. Moreover, CAT-Sil3K was released with approximately 85% recovery and 91% purity, in a biologically active form when free lysine solution was used as the eluent. Our data proved that Sil3K-tag, 12-mer peptide, can be a highly promising silica-affinity tag for effective enzyme immobilization with preserved activity. Additionally, the novel findings obtained here may open a new route not only for cost-effective enzyme immobilization approaches but also for high recovery of enzyme activity.

摘要

酶在固相中进行的生物催化已在多个实际应用中得到了实施。然而,为了实现高效的酶固定化并保持其活性,目前的方法还需要进一步发展。在此,我们开发了一种简单、快速且经济的基于生物亲和性的方法,用于直接固定化并高活性回收重组表达于大肠杆菌中的枯草芽孢杆菌过氧化氢酶(CAT)。我们首次使用来自拟南芥的丝氨酸衍生的五聚赖氨酰簇(Sil3K)及其突变变体(五聚精氨酸肽;Sil3R),通过非共价作用将重组酶非共价固定在硅胶颗粒上。融合蛋白 CAT-Sil3K 和 CAT-Sil3R 可从细胞裂解物中选择性地装载到硅胶表面上。出乎意料的是,与 Arg 基标签(Sil3R)或无标签系统相比,基于 Lys 的标签(Sil3K)在固定化时更有利于 CAT 活性的高回收;与无标签的 CAT 和 CAT-Sil3R 相比,CAT-Sil3K 的催化活性分别提高了 8.4 倍和 1.5 倍。此外,固定在硅胶颗粒上的 CAT-Sil3K 表现出更好的热稳定性、pH 稳定性和储存稳定性,并且在五个反应循环后仍保留初始活性的 72%。此外,当使用游离赖氨酸溶液作为洗脱液时,CAT-Sil3K 可以以生物活性形式以约 85%的回收率和 91%的纯度进行释放。我们的数据证明,12 肽的 Sil3K 标签可以作为一种很有前途的硅胶亲和标签,用于实现具有保留活性的有效酶固定化。此外,此处获得的新发现不仅可能为经济高效的酶固定化方法开辟新途径,而且可能为高回收酶活性开辟新途径。

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