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通过接头工程提高人血清白蛋白与α-2b干扰素融合蛋白的均一性、稳定性及活性。

Increasing the homogeneity, stability and activity of human serum albumin and interferon-alpha2b fusion protein by linker engineering.

作者信息

Zhao Hong Liang, Yao Xue Qin, Xue Chong, Wang Yang, Xiong Xiang Hua, Liu Zhi Min

机构信息

Department of Microorganism Engineering, Beijing Institute of Biotechnology, 20 Dongdajie Street, Fengtai District, Beijing 100071, People's Republic of China.

出版信息

Protein Expr Purif. 2008 Sep;61(1):73-7. doi: 10.1016/j.pep.2008.04.013. Epub 2008 May 16.

Abstract

Previous studies in our laboratory have shown that when the N-terminus of interferon-alpha2b (IFN-alpha2b) was directly fused of to the C-terminus of human serum albumin (HSA), the resultant fusion protein (HSA-IFN-alpha2b) was heterogeneous (migrated as doublets on non-reducing SDS-PAGE) and unstable (prone to form covalent aggregates). The heterogeneity and instability of HSA-IFN-alpha2b was ascribed to the structural disturbance between HSA and IFN-alpha2b. To alleviate such structural disturbance, linkers with different lengths (1, 2, 5, 10 amino acid residues) or different conformation (flexible linker (FL, GGGGS), rigid linker (RL, PAPAP) or helix-forming linker (HL, AEAAAKEAAAKA)) were inserted between HSA and IFN-alpha2b. It was demonstrated that linker with 5 amino acid residues was sufficient to separated HSA and IFN-alpha2b effectively, as fusion protein with this linker migrated as single band on non-reducing SDS-PAGE. The fusion proteins with FL, RL and HL linkers were purified to homogeneity with yields of 20%, while the recovery rate of HSA-IFN-alpha2b was only 10%. Accelerated thermal stress tests showed that in contrast to HSA-IFN-alpha2b, fusion proteins with FL, RL and HL linkers were free of aggregates after stored at 37 degrees C for 10 days. Stability tests also revealed that fusion proteins with FL, RL and HL linkers had different susceptibility to hydrolysis, with HSA-RL-IFN-alpha2b being the least susceptible to hydrolysis at pH 6 and 7. Activity assay revealed that the insertion of FL, RL and HL linkers increased the anti-viral activity of fusion protein by 39%, 68% and 115%, respectively.

摘要

我们实验室之前的研究表明,当干扰素-α2b(IFN-α2b)的N端直接与人血清白蛋白(HSA)的C端融合时,所得融合蛋白(HSA-IFN-α2b)具有异质性(在非还原SDS-PAGE上呈双峰迁移)且不稳定(易于形成共价聚集体)。HSA-IFN-α2b的异质性和不稳定性归因于HSA和IFN-α2b之间的结构干扰。为了减轻这种结构干扰,在HSA和IFN-α2b之间插入了不同长度(1、2、5、10个氨基酸残基)或不同构象(柔性接头(FL,GGGGS)、刚性接头(RL,PAPAP)或螺旋形成接头(HL,AEAAAKEAAAKA))的接头。结果表明,含有5个氨基酸残基的接头足以有效分离HSA和IFN-α2b,因为带有该接头的融合蛋白在非还原SDS-PAGE上呈单一条带迁移。带有FL、RL和HL接头的融合蛋白被纯化至同质,产率为20%,而HSA-IFN-α2b的回收率仅为10%。加速热应激试验表明,与HSA-IFN-α2b相比,带有FL、RL和HL接头的融合蛋白在37℃储存10天后没有聚集体。稳定性试验还表明,带有FL、RL和HL接头的融合蛋白对水解的敏感性不同,HSA-RL-IFN-α2b在pH 6和7时对水解的敏感性最低。活性测定表明,插入FL、RL和HL接头分别使融合蛋白的抗病毒活性提高了39%、68%和115%。

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