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Enhanced soluble expression of recombinant Flavobacterium heparinum heparinase i in Escherichia coli by fusing it with various soluble partners

机译:通过将其与多种可溶性伴侣融合,可增强重组黄杆菌肝素酶i在大肠杆菌中的可溶性表达

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Heparinase I (HepA) was originally isolated from Flavobacterium heparinum (F. heparinum) and specifically cleaves heparin/heparan sulfate in a site-dependent manner, showing great promise for producing low molecular weight heparin (LMWH). However, expressing recombinant HepA is extremely difficult in Escherichia coli because it suffers from low yields, insufficient purity and insolubility. In this paper, we systematically cloned and fused the HepA gene to the C-terminus of five soluble partners, including translation initiation factor 2 domain I (IF2), glutathione S-transferase (GST), maltose-binding protein (MBP), small ubiquitin modifying protein (SUMO) and N-utilization substance A (NusA), to screen for their abilities to improve the solubility of recombinant HepA when expressed in E. coli. A convenient two-step immobilized metal affinity chromatography (IMAC) method was utilized to purify these fused HepA hybrids. We show that, except for NusA, the fusion partners dramatically improved the soluble expression of recombinant HepA, with IF2-HepA and SUMO-HepA creating almost completely soluble HepA (98% and 94% of expressed HepA fusions are soluble, respectively), which is the highest yield rate published to the best of our knowledge. Moreover, all of the fusion proteins show comparable biological activity to their unfused counterparts and could be used directly without removing the fusion tags. Together, our results provide a viable option to produce large amounts of soluble and active recombinant HepA for manufacturing.
机译:肝素酶I(HepA)最初是从黄杆菌(F. heparinum)分离而来,并以位点依赖性方式特异性裂解肝素/硫酸乙酰肝素,显示出生产低分子量肝素(LMWH)的广阔前景。然而,在大肠杆菌中表达重组HepA非常困难,因为其产量低,纯度不足和不溶性。在本文中,我们系统地将HepA基因克隆并融合到五个可溶性伴侣的C末端,包括翻译起始因子2结构域I(IF2),谷胱甘肽S-转移酶(GST),麦芽糖结合蛋白(MBP),小泛素修饰蛋白(SUMO)和N利用物质A(NusA),以筛选它们在大肠杆菌中表达时提高重组HepA溶解度的能力。便利的两步固定化金属亲和色谱法(IMAC)用于纯化这些融合的HepA杂种。我们显示,除NusA以外,融合伙伴显着改善了重组HepA的可溶性表达,IF2-HepA和SUMO-HepA产生了几乎完全可溶的HepA(分别为98%和94%的表达HepA融合物可溶),是据我们所知发布的最高收益率。此外,所有融合蛋白均显示出与未融合对应物相当的生物学活性,可以在不去除融合标签的情况下直接使用。总之,我们的结果为生产大量可溶和有活性的重组HepA提供了可行的选择。

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