Pre-challenge gut microbial signature predicts RhCMV/SIV vaccine efficacy in rhesus macaques.

IF 3.7 2区 生物学 Q2 MICROBIOLOGY
Microbiology spectrum Pub Date : 2024-11-05 Epub Date: 2024-09-30 DOI:10.1128/spectrum.01285-24
Hayden N Brochu, Elise Smith, Sangmi Jeong, Michelle Carlson, Scott G Hansen, Jennifer Tisoncik-Go, Lynn Law, Louis J Picker, Michael Gale, Xinxia Peng
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Abstract

Rhesus cytomegalovirus expressing simian immunodeficiency virus (RhCMV/SIV) vaccines protect ~59% of vaccinated rhesus macaques against repeated limiting-dose intra-rectal exposure with highly pathogenic SIVmac239M, but the exact mechanism responsible for the vaccine efficacy is unknown. It is becoming evident that complex interactions exist between gut microbiota and the host immune system. Here, we aimed to investigate if the rhesus gut microbiome impacts RhCMV/SIV vaccine-induced protection. Three groups of 15 rhesus macaques naturally pre-exposed to RhCMV were vaccinated with RhCMV/SIV vaccines. Rectal swabs were collected longitudinally both before SIV challenge (after vaccination) and post-challenge and were profiled using 16S rRNA based microbiome analysis. We identified ~2,400 16S rRNA amplicon sequence variants (ASVs), representing potential bacterial species/strains. Global gut microbial profiles were strongly associated with each of the three vaccination groups, and all animals tended to maintain consistent profiles throughout the pre-challenge phase. Despite vaccination group differences, by using newly developed compositional data analysis techniques, we identified a common gut microbial signature predictive of vaccine protection outcome across the three vaccination groups. Part of this microbial signature persisted even after SIV challenge. We also observed a strong correlation between this microbial signature and an early signature derived from whole blood transcriptomes in the same animals. Our findings indicate that changes in gut microbiomes are associated with RhCMV/SIV vaccine-induced protection and early host response to vaccination in rhesus macaques.IMPORTANCEThe human immunodeficiency virus (HIV) has infected millions of people worldwide. Unfortunately, still there is no vaccine that can prevent or treat HIV infection. A promising pre-clinical HIV vaccine based on rhesus cytomegalovirus (RhCMV) expressing simian immunodeficiency virus (SIV) antigens (RhCMV/SIV) provides sustained, durable protection against SIV challenge in ~59% of vaccinated rhesus macaques. There is an urgent need to understand the cause of this protection vs non-protection outcome. In this study, we profiled the gut microbiomes of 45 RhCMV/SIV vaccinated rhesus macaques and identified gut microbial signatures that were predictive of RhCMV/SIV vaccination groups and vaccine protection outcomes. These vaccine protection-associated microbial features were significantly correlated with early vaccine-induced host immune signatures in whole blood from the same animals. These findings show that the gut microbiome may be involved in RhCMV/SIV vaccine-induced protection, warranting further research into the impact of the gut microbiome in human vaccine trials.

挑战前肠道微生物特征可预测猕猴接种 RhCMV/SIV 疫苗的效果。
表达猿免疫缺陷病毒(RhCMV/SIV)的恒河猴巨细胞病毒疫苗能保护约 59% 接种过疫苗的恒河猴免受高致病性 SIVmac239M 的重复限剂量直肠内暴露,但疫苗功效的确切机制尚不清楚。肠道微生物群与宿主免疫系统之间存在着复杂的相互作用,这一点已变得越来越明显。在此,我们旨在研究恒河猴肠道微生物群是否会影响 RhCMV/SIV 疫苗诱导的保护作用。三组共 15 只自然预先接触过 RhCMV 的恒河猴接种了 RhCMV/SIV 疫苗。在 SIV 挑战前(接种疫苗后)和挑战后纵向收集直肠拭子,并使用基于 16S rRNA 的微生物组分析进行分析。我们确定了约 2,400 个 16S rRNA 扩增子序列变体 (ASV),代表了潜在的细菌种类/菌株。总体肠道微生物特征与三个疫苗接种组密切相关,而且所有动物在整个挑战前阶段都倾向于保持一致的特征。尽管疫苗接种组之间存在差异,但通过使用新开发的成分数据分析技术,我们发现了一个共同的肠道微生物特征,该特征可预测三个疫苗接种组的疫苗保护结果。这种微生物特征的一部分甚至在 SIV 挑战后仍然存在。我们还观察到这一微生物特征与来自同一动物全血转录组的早期特征之间存在很强的相关性。我们的研究结果表明,肠道微生物组的变化与 RhCMV/SIV 疫苗诱导的保护以及猕猴对疫苗接种的早期宿主反应有关。 重要意义人类免疫缺陷病毒(HIV)已感染了全球数百万人。遗憾的是,目前仍没有疫苗可以预防或治疗 HIV 感染。一种基于表达猿免疫缺陷病毒(SIV)抗原的恒河猴巨细胞病毒(RhCMV)的临床前 HIV 疫苗(RhCMV/SIV)前景看好,它能为约 59% 接种过疫苗的恒河猴提供持续、持久的保护,使其免受 SIV 的挑战。目前迫切需要了解这种保护与非保护结果的原因。在这项研究中,我们分析了 45 只接种过 RhCMV/SIV 疫苗的猕猴的肠道微生物组,并确定了可预测 RhCMV/SIV 疫苗接种组和疫苗保护结果的肠道微生物特征。这些与疫苗保护相关的微生物特征与同一动物全血中早期疫苗诱导的宿主免疫特征显著相关。这些研究结果表明,肠道微生物组可能参与了 RhCMV/SIV 疫苗诱导的保护,因此有必要进一步研究肠道微生物组在人类疫苗试验中的影响。
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来源期刊
Microbiology spectrum
Microbiology spectrum Biochemistry, Genetics and Molecular Biology-Genetics
CiteScore
3.20
自引率
5.40%
发文量
1800
期刊介绍: Microbiology Spectrum publishes commissioned review articles on topics in microbiology representing ten content areas: Archaea; Food Microbiology; Bacterial Genetics, Cell Biology, and Physiology; Clinical Microbiology; Environmental Microbiology and Ecology; Eukaryotic Microbes; Genomics, Computational, and Synthetic Microbiology; Immunology; Pathogenesis; and Virology. Reviews are interrelated, with each review linking to other related content. A large board of Microbiology Spectrum editors aids in the development of topics for potential reviews and in the identification of an editor, or editors, who shepherd each collection.
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