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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Self-encapsulation and controlled release of recombinant proteins using novel silica-forming peptides as fusion linkers
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Self-encapsulation and controlled release of recombinant proteins using novel silica-forming peptides as fusion linkers

机译:使用新型二氧化硅形成肽作为融合蛋白的重组蛋白的自封装和控制释放

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摘要

Recently, the potential use of biomimetic silica as smart matrices for the auto-encapsulation and controlled release of functional proteins has gained increased interest because of the mild synthesis conditions. Inspired by biological silicification, in this study, we studied novel silica-forming peptides (SFPs), Volp1 and Salp1, to mediate the generation of silica hybrids in vitro. The fusion of SFPs to model fluorescent proteins directed their auto encapsulation in wet sol-gel silica materials. Furthermore, the SFPs served as affinity linkers for the immobilization of recombinant proteins in silica. Interestingly, the SFP fusion proteins modulated silicic acid polycondensation and allowed for the self-immobilization of SFP fusion proteins in two distinct silica formulations depending on the ionic strength-precipitated silica particles or wet silica gel. The controlled release of Salp1/Volp1 fusion proteins from silica matrices was significantly greater than that of the silaffin R5 fusion proteins. Subsequently, we showed that multiple SFP-tagged proteins homogenously entrapped within a silica matrix could be separately released following pre-incubation with different concentrations of L-arginine solution. These new findings provide a simple and reproducible route for silica hybrid formation for in situ stable auto-encapsulation and the sustained release of recombinant proteins with potential applications in biotechnology. (C) 2018 Elsevier B.V. All rights reserved.
机译:最近,由于单态合成条件,潜在使用仿生二氧化硅作为用于自动包封和控制释放的智能矩阵,因此具有增加的兴趣。通过生物硅化的启发,在本研究中,我们研究了新型二氧化硅形成肽(SFP),Volp1和Salp1,以在体外介导二氧化硅杂种的产生。 SFP融合到模型荧光蛋白的融合指导其在湿溶胶 - 凝胶二氧化硅材料中的自动包封。此外,SFP作为用于固定二氧化硅中的重组蛋白质的亲和接头。有趣的是,SFP融合蛋白调节硅酸缩聚并允许根据离子强度沉淀的二氧化硅颗粒或湿硅胶的两种不同的二氧化硅配方中的SFP融合蛋白自固定。来自二氧化硅基质的Salp1 / Volp1融合蛋白的控制释放显着大于硅藻土R5融合蛋白的蛋白质。随后,我们表明,在用不同浓度的L-精氨酸溶液预孵育后,可以单独释放均匀捕获二氧化硅基质内的多个SFP标记蛋白。这些新发现为原位稳定自身包封的二氧化硅杂化形成和具有潜在应用的生物技术应用的重组蛋白持续释放的简单而可重复释放的途径。 (c)2018年elestvier b.v.保留所有权利。

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