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霍乱弧菌CTB与幽门螺杆菌ure I重组融合蛋白的表达及免疫原性分析

[Expression and immunogenicity analysis of a recombinant fusion protein of V. Cholera ctB and H. pylori ure I].

作者信息

Wang Bao-ning, Yang Xiao-fang, Shi Qiao-fa, Li Ming-yuan, Chen Cui-ping, Cao Kang, Li Hong

机构信息

Department of Microbiology, School of Preclinical and Forensic Medicine, Sichuan University, Chengdu 610041, China.

出版信息

Xi Bao Yu Fen Zi Mian Yi Xue Za Zhi. 2006 May;22(3):276-9.

Abstract

AIM

To express fusion protein of the cholera toxin B subunit (ctB) and the urea membrane channel gene (ure I) of H. pylori in E. coli, and analyze its immunogenicity.

METHODS

The prokaryotic expression vector pET32a+/ctB/ure I was constructed by inserting ctB gene amplified by PCR into the 5' terminus of ure I gene of expression vector pET32a+/ure I. The fusion gene was verified by endonuclease digestion and sequence analysis. The fusion protein ctB/ure I was expressed in E. coli BL21(DE3), purified by His-HP affinity chromatography, and analyzed by SDS-PAGE, Western blot and Pro-gel analyzer 4.0. The mice were immunized with purified ctB/ure I, and the immunoreactivity with ctB and ure I of the murine sera was analyzed by indirect ELISA.

RESULTS

The pET32a+/ctB/ure I expression vector was constructed successfully and confirmed by endonuclease digestion and sequence analysis. The expressed ctB/ure I protein with molecular weight about 58,000 was shown when induced with 1 mmol/L IPTG for 4 h at 22 degrees C, and the protein could react with horse anti-ctB and human anti-ure I sera when detected with Western blot, and the purity of the purified protein was about 94.3%. The sera from mice immunized with purified ctB/ure I protein could react with ctB, ure I, and ctB/ure I when detected with indirect ELISA.

CONCLUSION

The fusion protein expression vector pET32a+/ctB/ure I was constructed successfully. The fusion protein ctB/ure I was shown to have immunoreactivity with both anti-ctB and anti-ure I anti-sera, and could evoke production of anti-ctB and anti-ure I antibody in mice. Our work established a good foundation for further study on the new and effective H. pylori vaccines.

摘要

目的

在大肠杆菌中表达霍乱毒素B亚单位(ctB)与幽门螺杆菌尿素膜通道基因(ure I)的融合蛋白,并分析其免疫原性。

方法

通过PCR扩增ctB基因并将其插入表达载体pET32a+/ure I的ure I基因5'端,构建原核表达载体pET32a+/ctB/ure I。经内切酶消化和序列分析验证融合基因。融合蛋白ctB/ure I在大肠杆菌BL21(DE3)中表达,通过His-HP亲和层析纯化,并用SDS-PAGE、Western印迹和Pro-gel analyzer 4.0进行分析。用纯化的ctB/ure I免疫小鼠,通过间接ELISA分析鼠血清与ctB和ure I的免疫反应性。

结果

成功构建了pET32a+/ctB/ure I表达载体,经内切酶消化和序列分析证实。在22℃用1 mmol/L IPTG诱导4小时后,显示表达出分子量约为58,000的ctB/ure I蛋白,Western印迹检测时该蛋白能与马抗ctB和人抗ure I血清反应,纯化蛋白的纯度约为94.3%。用纯化的ctB/ure I蛋白免疫的小鼠血清经间接ELISA检测时能与ctB、ure I和ctB/ure I反应。

结论

成功构建了融合蛋白表达载体pET32a+/ctB/ure I。融合蛋白ctB/ure I显示出与抗ctB和抗ure I抗血清均有免疫反应性,并能在小鼠体内诱发抗ctB和抗ure I抗体的产生。我们的工作为进一步研究新型有效的幽门螺杆菌疫苗奠定了良好基础。

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