Department of Chemical Engineering, Tsinghua University, Beijing 100084, PR China.
J Biotechnol. 2013 Jan 10;163(1):30-7. doi: 10.1016/j.jbiotec.2012.09.016. Epub 2012 Oct 13.
Enzymatic degradation of heparin has great potential as an ecological and specific way to produce low molecular weight heparin. However, the commercial use of heparinase I (HepA), one of the most important heparin lyases, has been hampered by low productivity and poor thermostability. Fusion with green fluorescent protein (GFP) or maltose-binding protein (MBP) has shown potential in facilitating the industrial use of HepA. Thus, tripartite fusion of GFP, MBP and HepA would be a promising approach. Therefore, in the present study, the tripartite fusion strategy was systematically studied, mainly focusing on the fusion order and the linker sequence, to obtain a fusion protein offering one-step purification and real-time detection of HepA activity by fluorescence as well as high HepA activity and thermostability. Our results show that fusion order is important for MBP binding affinity and HepA activity, while the linker sequences at domain junctions have significant effects on protein expression level, HepA activity and thermostability as well as GFP fluorescence. The best tripartite fusion was identified as MBP-(EAAAK)(3)-GFP-(GGGGS)(3)-HepA, which shows potential to facilitate the production of HepA and its application in industrial preparation of low molecular weight heparin.
肝素的酶解具有很大的潜力,可以作为一种生态且特异的方法来生产低分子量肝素。然而,肝素酶 I(HepA)作为最重要的肝素裂解酶之一,其商业应用受到生产力低和热稳定性差的阻碍。与绿色荧光蛋白(GFP)或麦芽糖结合蛋白(MBP)融合已显示出在促进 HepA 的工业应用方面的潜力。因此,GFP、MBP 和 HepA 的三聚体融合将是一种很有前途的方法。因此,在本研究中,系统地研究了三聚体融合策略,主要集中在融合顺序和连接序列上,以获得一种融合蛋白,该融合蛋白可通过荧光进行一步纯化和实时检测 HepA 活性,同时具有高的 HepA 活性和热稳定性。我们的结果表明,融合顺序对 MBP 的结合亲和力和 HepA 的活性很重要,而在结构域连接处的连接序列对蛋白表达水平、HepA 活性和热稳定性以及 GFP 荧光有显著影响。鉴定出的最佳三聚体融合为 MBP-(EAAAK)(3)-GFP-(GGGGS)(3)-HepA,它具有促进 HepA 生产及其在低分子量肝素工业制备中应用的潜力。