高等学校化学学报 ›› 2004, Vol. 25 ›› Issue (6): 1060.

• 研究论文 • 上一篇    下一篇

[B10Glu,B24-Asp-B25]人胰岛素类似物的制备、鉴定与性质研究

怀文辉, 孙庭万, 俞梅敏, 茹炳根   

  1. 北京大学生命科学学院, 蛋白质工程和植物基因工程国家重点实验室, 北京 100871
  • 收稿日期:2003-05-12 出版日期:2004-06-24 发布日期:2004-06-24
  • 通讯作者: 茹炳根(1936年出生),男,教授,博士生导师,从事生物化学及分子生物学研究.E-mail:rulab@pku.edu.cn E-mail:rulab@pku.edu.cn

Preparation,Identification and Properties of [B10Glu,B24-Asp-B25] Human Insulin Analogues

HUAI Wen-Hui, SUN Ting-Wan, YU Mei-Min, RU Bing-Gen   

  1. National Key Laboratory of Protein Engineering and Plant Genetic Engineering, College of Life Scieme, Peking University, Beijing 100871, China
  • Received:2003-05-12 Online:2004-06-24 Published:2004-06-24

摘要: 采用PCR方法,将人胰岛素分子B链B10位His突变为Glu,在B24和B25位之间插入Asp,构建了[B10Glu,B24-Asp-B25]胰岛素原基因.利用通用型质粒pBV220构建表达载体,在大肠杆菌DH5α中表达,表达蛋白为包含体形式,约占菌体总蛋白的20%~30%.经过复性和凝胶过滤得到胰岛素原融合蛋白.用胰蛋白酶和羧肽酶B酶切,经DEAE离子交换和RP-HPLC纯化得胰岛素突变体类似物.用凝胶过滤法测定了蛋白质分子自身的缔合性质,用圆二色谱测定了构象变化.放射性免疫活性及受体结合活性测定结果表明,突变体分子缔合性明显下降,放免活性和受体结合活性分别约为人胰岛素的73.6%和146%.

关键词: 胰岛素类似物, 单体胰岛素, 原核表达, 生物学活性

Abstract: Diabetes mellitus is a kind of serious endocrinopathy and insulin is the most effective medicine for the treatment of diabetes. The effective form of insulin when used as medicine is monomer. However,normal insulin usually forms polymers because of its high self-association,which makes it lag in the regulation of glucose level in blood. So it is necessary to develop monomeric insulin analogues. Research on the structure and function of insulin indicates that the interaction between the two insulin molecules of dimer insulin exists mainly between the two β-sheets of C terminus of B chains. There is a strong hydrophobic interaction between aromatic rings of B24,B25,B26 residues. The hydrophobic interaction is crucial for the formation of insulin dimer. B10 His residue is very important for the formation of hexamer. Based on these points,mutations were introduced to the interaction surface,expecting to get monomeric insulin with a low self-association. A mutant gene was constructed through asymmetric PCR. B10His residue was replaced with Glu and Asp was inserted between B24 and B25 residues. The gene was cloned into pBV220,which is a heat-inducing expression vector. The gene was expressed in E.Coli DH5α with a high level. Protein was purified through Sephacyl S-100 after denature and refolding. The proinsulin analogue was digested by trypsin and carboxypeptidase B,the product of which was purified through DEAE Sepharose and RP-HPLC. Protein identities were confirmed by MALDI-TOF mass spectrometry. Purified insulin analogue was obtained. The self-association of the insulin analogue was studied through analytical size exclusive chromatography with Superdex 75 column. The result showed an lower self-association than human insulin obviously. Conformation changes were studied through circular dichoism,results of which also showed the insulin analogue had a low self-association. These results indicated this insulin analogue had a strong monomeric property. B10His was replaced with Glu,and hexamer could not form. The acidic residue Asp was inserted between B24 and B25.It could destroy the hydrophobic interaction between molecules. These two factors could weaken the self-association of insulin greatly. The biological activity of the human insulin analogue was also studied in vitro. The relative activity of RIA was {73.7%}. The relative activity of RBA was 146%. The analogue retained high activities in vitro. It suggested that [B10Glu,B24-Asp-B25] human insulin could be a potential drug for the treatment of diabetes.

Key words: Insulin analogue, Monomeric insulin, Procaryotic expression, Biological activity

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