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基于腺病毒的 SARS-CoV-2 疫苗候选物构建的启示:意料之外。

Insights from the Construction of Adenovirus-Based Vaccine Candidates against SARS-CoV-2: Expecting the Unexpected.

机构信息

Chair of Biochemistry and Molecular Medicine, Center for Biomedical Education and Research (ZBAF), Witten/Herdecke University, Stockumer Str. 10, 58453 Witten, Germany.

Microbiologie Fondamentale et Pathogénicité, MFP CNRS UMR 5234, Université de Bordeaux, 33076 Bordeaux, France.

出版信息

Viruses. 2023 Oct 25;15(11):2155. doi: 10.3390/v15112155.

Abstract

To contain the spread of the SARS-CoV-2 pandemic, rapid development of vaccines was required in 2020. Rational design, international efforts, and a lot of hard work yielded the market approval of novel SARS-CoV-2 vaccines based on diverse platforms such as mRNA or adenovirus vectors. The great success of these technologies, in fact, contributed significantly to control the pandemic. Consequently, most scientific literature available in the public domain discloses the results of clinical trials and reveals data of efficaciousness. However, a description of processes and rationales that led to specific vaccine design is only partially available, in particular for adenovirus vectors, even though it could prove helpful for future developments. Here, we disclose our insights from the endeavors to design compatible functional adenoviral vector platform expression cassettes for the SARS-CoV-2 spike protein. We observed that contextualizing genes from an ssRNA virus into a DNA virus provides significant challenges. Besides affecting physical titers, expression cassette design of adenoviral vaccine candidates can affect viral propagation and spike protein expression. Splicing of mRNAs was affected, and fusogenicity of the spike protein in ACE2-overexpressing cells was enhanced when the ER retention signal was deleted.

摘要

为了控制 SARS-CoV-2 大流行的传播,2020 年需要快速开发疫苗。合理的设计、国际合作和大量的辛勤工作使得基于 mRNA 或腺病毒载体等多种平台的新型 SARS-CoV-2 疫苗获得了市场批准。这些技术的巨大成功实际上为控制大流行做出了重大贡献。因此,大多数公共领域的科学文献都公开了临床试验的结果,并揭示了有效性数据。然而,导致特定疫苗设计的过程和原理的描述仅部分可用,特别是对于腺病毒载体,即使这对于未来的发展可能证明是有帮助的。在这里,我们披露了我们在设计用于 SARS-CoV-2 刺突蛋白的兼容功能性腺病毒载体平台表达盒方面的见解。我们观察到,将 ssRNA 病毒的基因纳入 DNA 病毒会带来重大挑战。除了影响物理滴度外,腺病毒疫苗候选物的表达盒设计还会影响病毒的复制和刺突蛋白的表达。当删除 ER 保留信号时,mRNA 的剪接受到影响,并且在 ACE2 过表达细胞中,刺突蛋白的融合性增强。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/af7e/10675337/1ef1065257cd/viruses-15-02155-g001.jpg

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