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栝楼胰蛋白酶抑制剂(一种南瓜家族抑制剂)编码基因的化学合成、分子克隆及表达

Chemical synthesis, molecular cloning, and expression of the gene coding for the Trichosanthes trypsin inhibitor--a squash family inhibitor.

作者信息

Chen X M, Qian Y W, Chi C W, Gan K D, Zhang M F, Chen C Q

机构信息

Shanghai Institute of Biochemistry, Academia Sinica, People's Republic of China.

出版信息

J Biochem. 1992 Jul;112(1):45-51. doi: 10.1093/oxfordjournals.jbchem.a123863.

Abstract

The gene coding for a Trichosanthes trypsin inhibitor analog (Ala-6-TTI) in which methionine at position 6 was replaced by alanine was synthesized chemically. The synthetic gene was cloned into plasmid pWR590-1 and expressed in Escherichia coli as a fusion protein composed of beta-galactosidase fragment of 590 amino acid residues and (Ala-6)-TTI, with methionine as a connecting residue. After cyanogen bromide cleavage and reduction of the fusion protein, followed by refolding with trypsin-Sepharose 4B as a matrix and affinity chromatography on the immobilized enzyme, the fully active (Ala-6)-TTI was obtained. The trypsin inhibitory activity and amino acid composition of the recombinant (Ala-6)-TTI were consistent with those of the natural one. The (Ala-6)-TTI gene was also cloned into the secretion expression vector, pVT102U/alpha, in Saccharomyces cerevisiae. In order to make the reading frame of the gene compatible with the vector, a nucleotide was inserted into the (Ala-6)-TTI gene via site-directed mutagenesis. The secreted (Ala-6)-TTI was purified and found to be correctly processed at the junction between the alpha-factor leader peptide and (Ala-6)-TTI downstream. Of the two expression systems, the latter is more advantageous in the high yield (greater than 2 mg/liter), easy purification and needlessness of disulfide refolding.

摘要

化学合成了编码一种天花粉胰蛋白酶抑制剂类似物(Ala-6-TTI)的基因,其中第6位的甲硫氨酸被丙氨酸取代。将合成基因克隆到质粒pWR590-1中,并在大肠杆菌中表达为一种融合蛋白,该融合蛋白由590个氨基酸残基的β-半乳糖苷酶片段和(Ala-6)-TTI组成,甲硫氨酸作为连接残基。融合蛋白经溴化氰裂解和还原后,以胰蛋白酶-Sepharose 4B为基质进行重折叠,并在固定化酶上进行亲和层析,得到了完全有活性的(Ala-6)-TTI。重组(Ala-6)-TTI的胰蛋白酶抑制活性和氨基酸组成与天然产物一致。(Ala-6)-TTI基因也被克隆到酿酒酵母的分泌表达载体pVT102U/α中。为了使基因的阅读框与载体兼容,通过定点诱变在(Ala-6)-TTI基因中插入了一个核苷酸。分泌的(Ala-6)-TTI被纯化,发现在α-因子前导肽和下游的(Ala-6)-TTI之间的连接处加工正确。在这两种表达系统中,后者在高产率(大于2毫克/升)、易于纯化和无需二硫键重折叠方面更具优势。

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