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用于6-组氨酸标签重组蛋白亲和纯化的镍-萨伦负载顺磁性纳米颗粒

Nickel-Salen supported paramagnetic nanoparticles for 6-His-target recombinant protein affinity purification.

作者信息

Rashid Zahra, Ghahremanzadeh Ramin, Nejadmoghaddam Mohammad-Reza, Nazari Mahboobeh, Shokri Mohammad-Reza, Naeimi Hossein, Zarnani Amir-Hassan

机构信息

Department of Organic Chemistry, Faculty of Chemistry, University of Kashan, Kashan, Iran.

Nanobiotechnology Research Center, Avicenna Research Institute, ACECR, Tehran, Iran.

出版信息

J Chromatogr A. 2017 Mar 24;1490:47-53. doi: 10.1016/j.chroma.2017.02.014. Epub 2017 Feb 13.

Abstract

In this research, a simple, efficient, inexpensive, rapid and high yield method for the purification of 6×histidine-tagged recombinant protein was developed. For this purpose, manganese ferrite magnetic nanoparticles (MNPs) were synthesized through a co-precipitation method and then they were conveniently surface-modified with tetraethyl orthosilicate (TEOS) in order to prevent oxidation and form high density of hydroxyl groups. Next, the salen ligand was prepared from condensation reaction of salicylaldehyde and 3-aminopropyl (trimethoxy) silane (APTMS) in 1:1 molar ratio; followed by complexation with Ni(OAc).4HO. Finally, the prepared Ni(II)-salen complex conjugated to silica coated MNPs and MnFeO@SiO@Ni-Salen complex nanoparticles were obtained. The functionalized nanoparticles were spherical with an average diameter around 70nm. The obtained MNPs had a saturation magnetization about 54 emu/g and had super paramagnetic character. These MNPs were used efficiently to enrich recombinant histidine-tagged (His-tagged) protein-A from bacterial cell lysate. In about 45min, highly pure His-tagged recombinant protein was obtained, as judged by SDS-PAGE analysis and silver staining. The amount of target protein in flow through and washing fractions was minimal denoting the high efficiency of purification process. The average capacity of the matrix was found to be high and about 180±15mgg (protein/MnFeO@SiO@Ni-Salen complex). Collectively, purification process with MnFeO@SiO@Ni-Salen complex nanoparticles is rapid, efficient, selective and whole purification can be carried out in only a single tube without the need for expensive systems.

摘要

在本研究中,开发了一种简单、高效、廉价、快速且高产的纯化6×组氨酸标签重组蛋白的方法。为此,通过共沉淀法合成了锰铁氧体磁性纳米颗粒(MNPs),然后用正硅酸四乙酯(TEOS)对其进行便捷的表面改性,以防止氧化并形成高密度的羟基。接下来,由水杨醛和3-氨丙基(三甲氧基)硅烷(APTMS)以1:1摩尔比缩合反应制备席夫碱配体;随后与Ni(OAc)·4H₂O络合。最后,将制备的Ni(II)-席夫碱络合物共轭到二氧化硅包覆的MNPs上,得到MnFe₂O₄@SiO₂@Ni-席夫碱复合纳米颗粒。功能化的纳米颗粒呈球形,平均直径约为70nm。所获得的MNPs具有约54emu/g的饱和磁化强度,并具有超顺磁性。这些MNPs被有效地用于从细菌细胞裂解物中富集重组组氨酸标签(His-tagged)蛋白A。通过SDS-PAGE分析和银染判断,在约45分钟内获得了高纯度的His-tagged重组蛋白。流过和洗涤组分中目标蛋白的量极少,表明纯化过程效率高。发现基质的平均容量很高,约为180±15mg/g(蛋白质/MnFe₂O₄@SiO₂@Ni-席夫碱复合纳米颗粒)。总体而言,使用MnFe₂O₄@SiO₂@Ni-席夫碱复合纳米颗粒的纯化过程快速、高效、选择性强,整个纯化过程仅需在单个试管中进行,无需昂贵的系统。

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