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重组流感 A 病毒作为肺炎支原体 P1a 和 P30a 载体的研究。

Research of recombinant influenza A virus as a vector for Mycoplasma pneumoniae P1a and P30a.

机构信息

Department of Clinical Laboratory, The First People's Hospital of Yunnan Province, Kunming, China.

The Fifth Department of Biological Products, Institute of Medical Biology, Chinese Academy of Medical Science and Peking Union Medical College, Kunming, China.

出版信息

Immun Inflamm Dis. 2024 Sep;12(9):e70021. doi: 10.1002/iid3.70021.

Abstract

BACKGROUND

Mycoplasma pneumoniae (MP) is a common respiratory pathogen affecting the longevity of the elderly and the health of children. However, the human vaccine against MP has not been successfully developed till now due to the poor immunogenicity and side effects of MP inactivated or attenuated vaccine. Therefore, it is necessary to develop a MP genetic engineering vaccine with influenza virus strain as vector.

METHODS

In this study, the major antigen genes P1a of MP adhesion factor P1(3862-4554 bases) and P30a of P30(49-822 bases) were inserted into the nonstructural protein (NS) gene of Influenza A virus strain A/Puerto Rio/8/34(H1N1), PR8 for short, to construct the recombinant vectors NS-P1a or NS-P30a. The recombinant pHW2000 plasmids containing NS-P1a or NS-P30a were cotransfected with the rest 7 fragments of PR8 into HEK293T cells. After inoculating chicken embryos, the recombinant influenza viruses rFLU-P1a and rFLU-P30a were rescued. RT-PCR and sequencing were used to identify the recombinant viruses. The hemagglutination titers of rFLU-P1a and rFLU-P30a were determined after five successive generations in chicken embryos so as to indicate the genetic stability of the recombinant viruses. The morphology of recombinant influenza viruses was observed under electron microscopy.

RESULTS

P1a or P30a was designed to be inserted into the modified NS gene sequence separately and synthesized successfully. RT-PCR identification of the recombinant viruses rFLU-P1a and rFLU-P30a showed that P1a (693 bp), P30a (774 bp), NS-P1a (1992bp) and NS-P30a (2073 bp) bands were found, and the sequencing results were correct. After five successive generations, each virus generation has a certain hemagglutination titer (from 1:32 to 1:64), and the band of P1a or P30a can be seen in the corresponding positions. The virus particles under the electron microscope appeared as spheres or long strips connected by several particles, revealing a complete viral membrane structure composed of virus lipid bilayer, hemagglutinin, neuraminidase, and matrix proteins.

CONCLUSION

The recombinant viruses rFLU-P1a and rFLU-P30a which carried the advantaged immune regions of the P1 and P30 genes in MP were successfully constructed and identified. And the genetic stability of rFLU-P1a or rFLU-P30a was relatively high. The typical and complete morphology of influenza virus was observed under the electron microscope. Our research provided a foundation for the further development of MP vaccines for human.

摘要

背景

肺炎支原体(MP)是一种常见的呼吸道病原体,影响老年人的寿命和儿童的健康。然而,由于 MP 灭活或减毒疫苗的免疫原性差和副作用,至今尚未成功开发出针对人类的 MP 基因工程疫苗。因此,有必要利用流感病毒株作为载体开发 MP 基因工程疫苗。

方法

本研究将 MP 黏附因子 P1 的主要抗原基因 P1a(3862-4554 位碱基)和 P30 的 P30a(49-822 位碱基)插入到甲型流感病毒株 A/Puerto Rio/8/34(H1N1)(简称 PR8)的非结构蛋白(NS)基因中,构建重组载体 NS-P1a 或 NS-P30a。将含有 NS-P1a 或 NS-P30a 的重组 pHW2000 质粒与 PR8 的其余 7 个片段共转染 HEK293T 细胞。接种鸡胚后,拯救出重组流感病毒 rFLU-P1a 和 rFLU-P30a。通过 RT-PCR 和测序鉴定重组病毒。连续传代 5 代后,测定 rFLU-P1a 和 rFLU-P30a 的血凝滴度,以表明重组病毒的遗传稳定性。用电子显微镜观察重组流感病毒的形态。

结果

成功设计并合成了 P1a 或 P30a 插入到修饰的 NS 基因序列中。重组病毒 rFLU-P1a 和 rFLU-P30a 的 RT-PCR 鉴定表明,在相应位置可以观察到 P1a(693bp)、P30a(774bp)、NS-P1a(1992bp)和 NS-P30a(2073bp)条带,测序结果正确。连续传代 5 代后,每个病毒代次均有一定的血凝滴度(1:32 至 1:64),且可在相应位置观察到 P1a 或 P30a 条带。电子显微镜下的病毒颗粒呈球体或由几个颗粒连接的长条状,显示出由病毒脂质双层、血凝素、神经氨酸酶和基质蛋白组成的完整病毒膜结构。

结论

成功构建并鉴定了携带 MP P1 和 P30 优势免疫区的重组病毒 rFLU-P1a 和 rFLU-P30a。rFLU-P1a 或 rFLU-P30a 的遗传稳定性相对较高。在电子显微镜下观察到典型完整的流感病毒形态。本研究为进一步开发针对人类的 MP 疫苗提供了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4eed/11408921/59777f78bdc8/IID3-12-e70021-g006.jpg

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