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表达和鉴定具有壳聚糖结合域的增强型重组肝素酶 I。

Expression and characterization of an enhanced recombinant heparinase I with chitin binding domain.

机构信息

School of Pharmaceutical Science, Jiangnan University, Wuxi 214122, China.

School of Pharmaceutical Science, Jiangnan University, Wuxi 214122, China.

出版信息

Int J Biol Macromol. 2017 Dec;105(Pt 1):1250-1258. doi: 10.1016/j.ijbiomac.2017.07.158. Epub 2017 Aug 5.

Abstract

Heparinase I (Hep I) can efficiently depolymerize heparin and heparin sulfate to oligosaccharides or unsaturated disaccharides, which resulted in loss of physiological function such as blood coagulation. In order to realize the immobilization of Hep I on chitin carriers, we cloned Hep I with the chitin binding domain (ChBD) as a chitin-affinity tag, and the Small Ubiquitin-like MOdifier (SUMO) linker as a solvation enhancer in different fusion sequence. DNA and protein gels suggested that 4 kinds of recombinants were successfully constructed and expressed in Escherichia coli (E. coli). And the triple functional heparinases isolated from cell lysate could be efficiently purified by chitin beads. After optimizing fermentation conditions, it gave the specific enzyme activities of 1.88±0.11, 3.69±0.45, 3.44±0.38, and 2.73±0.29IU/mg total proteins for ChBD-Hep I, ChBD-SUMO-Hep I, SUMO-ChBD-Hep I, and ChBD-Hep I-SUMO, respectively, with unfractionated heparin as substrate. The optimal reaction temperature and pH were determined to be 30°C and 7.0 for all the fusion enzymes. ChBD-SUMO-Hep I exhibited the maximum half-life (48min) at 30°C and best thermo-stability under 15-50°C. All the fusion enzymes showed broad pH-stability in the range of 5.4-9.0.

摘要

肝素酶 I (Hep I) 能够有效地将肝素和硫酸肝素解聚为低聚糖或不饱和二糖,从而导致其丧失如凝血等生理功能。为了实现 Hep I 在几丁质载体上的固定化,我们将带有几丁质结合域 (ChBD) 的 Hep I 克隆为几丁质亲和标签,并将小泛素样修饰物 (SUMO) 接头作为溶剂增强剂用于不同的融合序列。DNA 和蛋白质凝胶表明,成功构建并在大肠杆菌 (E. coli) 中表达了 4 种重组体。并且从细胞裂解物中分离出的三功能肝素酶可以通过几丁质珠高效纯化。在优化发酵条件后,以未分级肝素为底物,ChBD-Hep I、ChBD-SUMO-Hep I、SUMO-ChBD-Hep I 和 ChBD-Hep I-SUMO 的总蛋白比酶活分别为 1.88±0.11、3.69±0.45、3.44±0.38 和 2.73±0.29IU/mg。所有融合酶的最佳反应温度和 pH 均确定为 30°C 和 7.0,使用未分级肝素作为底物。ChBD-SUMO-Hep I 在 30°C 时半衰期最长(48min),在 15-50°C 下热稳定性最佳。所有融合酶在 pH5.4-9.0 的范围内均具有较宽的 pH 稳定性。

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