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[利用H120刺突糖蛋白胞外域区域拯救重组传染性支气管炎病毒]

[Rescue of the recombinant infectious bronchitis virus with the ectodomain region of H120 spike glycoprotein].

作者信息

Wei Yan-quan, Guo Hui-chen, Wang Hai-ming, Sun De-hui, Han Shi-chong, Sun Shi-qi

出版信息

Bing Du Xue Bao. 2014 Nov;30(6):668-74.

PMID:25868282
Abstract

To explore the expression potential of heterogeneous genes using the backbone of infectious bronchitis virus (IBV) Beaudette strain, the ectodomain region of the Spike gene (1,302 bp) of IBV H120 strain was amplified by RT-PCR and replaced into the corresponding location of the IBV Beaudette strain full-length cDNA. This recombinant was designated as BeauR-H120(S1). BeauR-H120(S1) was directly used as the DNA template for the transcription of viral genomic RNA in vitro. Then, the transcription product was transfected into Vero cells by electroporation. At 48 h post-transfection, the transfected Vero cells were harvested, and passaging continued. A syncytium was not observed until the recombinant virus had passed through four passages. The presence of rBeau-H120(S1) was verified by the detection of the replaced ectodomain region of the H120 Spike gene using RT-PCR. Western blot analysis of rBeau-H120 (S1)-infected Vero cell lysates demonstrated that the nucleocapsid (N) protein was expressed, which implied that rBeau-H120(S1) could propagate in Vero cells. The TCIDs0 and EIDs0 data demonstrated that the titer levels of rBeau-H120(S1) reached 10(590+/-0.22)TCID50/mL and 10(6.13+/-0.23)EID50/mL in Vero cells and 9-day-old SPF chicken embryos, respectively. Protection studies showed that the percentage of antibody-positive chickens, which were vaccinated with rBeau-H120(S1) at 7 days after hatching, rose to 90% at 21 days post-inoculation. Inoculation provided an 85% rate of immune protection against a challenge of the virulent IBV M41 strain (103EID50/chicken). This recombinant virus constructed using reverse genetic techniques could be further developed as a novel genetic engineering vaccine against infectious bronchitis.

摘要

为利用传染性支气管炎病毒(IBV)Beaudette株的骨架探索异源基因的表达潜力,通过RT-PCR扩增IBV H120株Spike基因的胞外域区域(1302 bp),并将其替换到IBV Beaudette株全长cDNA的相应位置。该重组体命名为BeauR-H120(S1)。BeauR-H120(S1)直接用作体外转录病毒基因组RNA的DNA模板。然后,通过电穿孔将转录产物转染到Vero细胞中。转染后48小时,收获转染的Vero细胞并继续传代。直到重组病毒传代四次后才观察到合胞体。通过RT-PCR检测H120 Spike基因的替换胞外域区域,验证了rBeau-H120(S1)的存在。对rBeau-H120(S1)感染的Vero细胞裂解物进行的蛋白质免疫印迹分析表明,核衣壳(N)蛋白表达,这意味着rBeau-H120(S1)可以在Vero细胞中增殖。半数组织培养感染剂量(TCIDs0)和鸡胚感染剂量(EIDs0)数据表明,rBeau-H120(S1)在Vero细胞和9日龄SPF鸡胚中的滴度水平分别达到10(5.90±0.22)TCID50/mL和10(6.13±0.23)EID50/mL。保护研究表明,孵化后7天用rBeau-H120(S1)接种的抗体阳性鸡的百分比在接种后21天升至90%。接种提供了85%的免疫保护率,可抵抗强毒IBV M41株(103EID50/鸡)的攻击。这种利用反向遗传技术构建的重组病毒可进一步开发为新型抗传染性支气管炎基因工程疫苗。

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引用本文的文献

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Recombinant infectious bronchitis coronavirus H120 with the spike protein S1 gene of the nephropathogenic IBYZ strain remains attenuated but induces protective immunity.重组传染性支气管炎冠状病毒 H120 保留了 S1 基因的纤突蛋白,但其毒力减弱,但能诱导保护性免疫。
Vaccine. 2020 Mar 30;38(15):3157-3168. doi: 10.1016/j.vaccine.2020.01.001. Epub 2020 Feb 11.