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感染ChAdOx1载体候选HIV-1疫苗的人类细胞中的腺病毒转录组以高水平正确剪接的HIVconsv1&62转基因RNA为主。

Adenovirus Transcriptome in Human Cells Infected with ChAdOx1-Vectored Candidate HIV-1 Vaccine Is Dominated by High Levels of Correctly Spliced HIVconsv1&62 Transgene RNA.

作者信息

Matthews David A, Milligan Rachel, Wee Edmund G, Hanke Tomáš

机构信息

School of Cellular and Molecular Medicine, Faculty of Life Sciences, University of Bristol, Bristol BS8 1TD, UK.

The Jenner Institute, Nuffield Department of Medicine, University of Oxford, Oxford OX3 7DQ, UK.

出版信息

Vaccines (Basel). 2023 Jul 1;11(7):1187. doi: 10.3390/vaccines11071187.

Abstract

We develop candidate HIV-1 vaccines, of which two components, ChAdOx1.tHIVconsv1 (C1) and ChAdOx1.HIVconsv62 (C62), are delivered by the simian adenovirus-derived vaccine vector ChAdOx1. Aberrant adenovirus RNA splicing involving transgene(s) coding for the SARS-CoV-2 spike was suggested as an aetiology of rare adverse events temporarily associated with the initial deployment of adenovirus-vectored vaccines during the COVID-19 pandemic. Here, to eliminate this theoretically plausible splicing phenomenon from the list of possible pathomechanisms for our HIV-1 vaccine candidates, we directly sequenced mRNAs in C1- and C62-infected nonpermissive MRC-5 and A549 and permissive HEK293 human cell lines. Our two main observations in nonpermissive human cells, which are most similar to those which become infected after the intramuscular administration of vaccines into human volunteers, were that (i) the dominant adenovirus vector-derived mRNAs were the expected transcripts coding for the HIVconsvX immunogens and (ii) atypical splicing events within the synthetic open reading frame of the two transgenes are rare. We conclude that inadvertent RNA splicing is not a safety concern for the two tested candidate HIV-1 vaccines.

摘要

我们研发了候选HIV-1疫苗,其中两个组分,即ChAdOx1.tHIVconsv1(C1)和ChAdOx1.HIVconsv62(C62),由猿猴腺病毒衍生的疫苗载体ChAdOx1递送。在2019年冠状病毒病大流行期间,涉及编码严重急性呼吸综合征冠状病毒2刺突蛋白的转基因的异常腺病毒RNA剪接被认为是与腺病毒载体疫苗初始接种暂时相关的罕见不良事件的病因。在此,为了从我们的候选HIV-1疫苗可能的发病机制列表中消除这种理论上看似合理的剪接现象,我们直接对C1和C62感染的非允许性MRC-5和A549以及允许性HEK293人细胞系中的mRNA进行了测序。我们在非允许性人细胞中的两个主要观察结果,这与人志愿者肌肉注射疫苗后被感染的细胞最为相似,即(i)主要的腺病毒载体衍生的mRNA是编码HIVconsvX免疫原的预期转录本,以及(ii)两个转基因的合成开放阅读框内的非典型剪接事件很少见。我们得出结论,意外的RNA剪接不是这两种测试的候选HIV-1疫苗的安全问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7e80/10384973/4c222b1ce510/vaccines-11-01187-g001.jpg

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