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含APPβ切割位点肽和Aβ(1-15)的嵌合乙肝核心抗原的原核表达及免疫原性分析

[Prokaryotic expression and immunogenicity analysis of the chimeric HBcAg containing APP beta cleavage site peptide and Aβ(1-15);].

作者信息

Feng Gai-feng, Wang Jun-yang, Jin Hui, Wang Wei-xi, Qian Yi-hua, Yang Wei-na, Wang Quan-ying, Yang Guang-xiao

机构信息

Department of Human Anatomy and Histo/Embryology, Xi'an Jiaotong University, Xi'an, China.

出版信息

Xi Bao Yu Fen Zi Mian Yi Xue Za Zhi. 2011 Nov;27(11):1169-72.

Abstract

AIM

To construct the recombinant prokaryotic expression plasmid pET/c-ABCSP-Aβ(15-c);, and evaluate the immunogenicity of the fusion protein expressed in E.coli.

METHODS

The gene fragment HBc88-144 was amplified by PCR and subcloned to pUC19. The APP beta cleavage site peptide(ABCSP) and Aβ(1-15); gene(ABCSP-Aβ(15);) was amplified by PCR and inserted downstream of HBc1-71 in pGEMEX/c1-71. After restriction enzyme digestion, c1-17-ABCSP-Aβ(15); were connected with HBc88-144, yielding the recombinant gene c-ABCSP-Aβ(15-c);. c-ABCSP-Aβ(15-c); gene was subcloned into pET-28a(+).The fusion protein expressed in transformed E.coli BL21 was induced with IPTG and analyzed by SDS-PAGE. The virus-like particles (VLP) formed by fusion protein was observed with Transmission Electron Microscope (TEM). 4 Kunming (KM) mice received intraperitoneal injection (i.p) of fusion protein VLP. The antibody was detected by indirect ELISA.

RESULTS

The recombinant gene was confirmed by restriction enzyme digestion and DNA sequencing. After IPTG induction, fusion protein was expressed and mainly existed in the sediment of the bacterial lysate. The expression level was 40% of all the proteins in the sediment. The fusion protein could form VLP. After 5 times of immunization, the titer of anti-ABCSP and anti-Aβantibody in sera of KM mice reached up to 1:5 000 and 1:10 000 respectively, while the anti-HBc antibody was undetectable.

CONCLUSION

Recombinant c-ABCSP-Aβ(15-c); gene can be expressed in E.coli. The expressed protein could form VLP and has a strong immunogenicity. This study lays the foundation for the study of AD genetic engineering vaccine.

摘要

目的

构建重组原核表达质粒pET/c-ABCSP-Aβ(15-c),并评估在大肠杆菌中表达的融合蛋白的免疫原性。

方法

通过PCR扩增基因片段HBc88-144,并亚克隆至pUC19。通过PCR扩增APPβ切割位点肽(ABCSP)和Aβ(1-15)基因(ABCSP-Aβ(15)),并插入pGEMEX/c1-71中HBc1-71的下游。经酶切后,将c1-17-ABCSP-Aβ(15)与HBc88-144连接,得到重组基因c-ABCSP-Aβ(15-c)。将c-ABCSP-Aβ(15-c)基因亚克隆至pET-28a(+)。用IPTG诱导转化的大肠杆菌BL21中表达的融合蛋白,并用SDS-PAGE进行分析。用透射电子显微镜(TEM)观察融合蛋白形成的病毒样颗粒(VLP)。4只昆明(KM)小鼠腹腔注射(i.p)融合蛋白VLP。通过间接ELISA检测抗体。

结果

经酶切和DNA测序证实重组基因。IPTG诱导后,融合蛋白表达,主要存在于细菌裂解物的沉淀中。表达水平占沉淀中所有蛋白的40%。融合蛋白可形成VLP。免疫5次后,KM小鼠血清中抗ABCSP和抗Aβ抗体的效价分别达到1:5 000和1:10 000,而抗HBc抗体未检测到。

结论

重组c-ABCSP-Aβ(15-c)基因可在大肠杆菌中表达。表达的蛋白可形成VLP,具有较强的免疫原性。本研究为AD基因工程疫苗的研究奠定了基础。

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